This page contains a complete list of publications for the group. To the best of our ability, we strive to publish our works as open-access, but where this is not possible, please do not hesitate to get in touch via email to request a copy of a paper from the author(s) [see Contact Us page]. You can use CTRL+F to search for specific authors.
2025 |
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Charge transfer dynamics in noble gas endofullerenes: Intra- and extramolecular tunnelling. Sufyan, A., James, T., Fields, C., Naseri, S., Junqueira, F., Alonso-Perez, S., Bloodworth, S., Hoffman, G., Walkey, M. C., Marsden, E. S., Whitby, R. J., Wang, Y., Duncan, D. A., Lee, T.-L., O’Shea, J. N., Larsson, J. A., Kiraly, B., & Moriarty, P. (2025). Nanoscale Advances, 10.1039.D5NA00727E. https://doi.org/10.1039/D5NA00727E
An 18-Porphyrin Nanoring at the Size Limit for Global Aromaticity. Holmes, J. M., Gotfredsen, H., Gödde, L., Hergenhahn, J., Rani, K., Yamada, K. E., Deng, J.-R., Warwick, L., Clarke, M., Edmondson, M., O’Shea, J. N., Saywell, A., & Anderson, H. L. (2025). Journal of the American Chemical Society, 147(36), 32840–32850. https://doi.org/10.1021/jacs.5c09149
Timing the escape of a photoexcited electron from a molecular cage. Fields, C., Foerster, A., Ghaderzadeh, S., Popov, I., Huynh, B., Junqueira, F., James, T., Alonso Perez, S., Duncan, D. A., Lee, T.-L., Wang, Y., Bloodworth, S., Hoffman, G., Walkey, M., Whitby, R. J., Levitt, M. H., Kiraly, B., O’Shea, J. N., Besley, E., & Moriarty, P. (2025). Nature Communications, 16(1), 5062. https://doi.org/10.1038/s41467-025-60260-z
Complexity at a Humid Interface: Throwing Fresh Light on Atmospheric Corrosion. Dowhyj, M., Kousar, K., Lydiatt, F. P., Chekulaev, D., Walczak, M. S., Temperton, R., N.O’Shea, J., Walters, W. S., Thomas, A. G., & Lindsay, R. (2025). ACS Applied Materials & Interfaces, 17(18), 27323–27330. https://doi.org/10.1021/acsami.4c21013
‘ChatGPT did my homework’: Lessons learnt from embedding a chatbot in undergraduate coursework. Elson, L., Gaughan, L., Hopton, B., LIoyd-Brown, S., Briggs, C., Gharamti, M., & Moriarty, P. (2025). Physics Education, 60(2), 025022. https://doi.org/10.1088/1361-6552/adb363
Probing and manipulating the Mexican hat-shaped valence band of In2Se3.Felton, J., Harknett, J., Page, J., Yang, Z., Alghofaili, N., O’Shea, J. N., Eaves, L., Kohama, Y., Greenaway, M. T., & Patanè, A. (2025). Nature Communications 2025 16:1, 16(1), 1–9. https://doi.org/10.1038/s41467-025-56139-8
A descriptor guiding the selection of catalyst supports for ammonia synthesis. Weilhard, A., Popov, I., Kohlrausch, E. C., Aliev, G. N., Blankenship, L. S., Norman, L. T., Ghaderzadeh, S., Smith, L., Isaacs, M., O’Shea, J., Lanterna, A. E., Theis, W., Morgan, D., Hutchings, G. J., Besley, E., Khlobystov, A. N., & Alves Fernandes, J. (2025). Chemical Science, 16(11), 4851–4859. https://doi.org/10.1039/D4SC08253B
2024 |
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A versatile system for the growth of porphyrin films via electrospray and molecular sublimation in vacuum and their multi-technique characterization. Goto, F., Calloni, A., Yivlialin, R., Bossi, A., Ciccacci, F., Duò, L., O’Shea, J. N., & Bussetti, G. (2024). Review of Scientific Instruments, 95(9). https://doi.org/10.1063/5.0223459/3310878
Altermagnetic lifting of Kramers spin degeneracy. Krempaský, J., Šmejkal, L., D’Souza, S. W., Hajlaoui, M., Springholz, G., Uhlířová, K., Alarab, F., Constantinou, P. C., Strocov, V., Usanov, D., Pudelko, W. R., González-Hernández, R., Birk Hellenes, A., Jansa, Z., Reichlová, H., Šobáň, Z., Gonzalez Betancourt, R. D., Wadley, P., Sinova, J., … Jungwirth, T. (2024). Nature 2024 626:7999, 626(7999), 517–522. https://doi.org/10.1038/s41586-023-06907-7
Altermagnetism imaged and controlled down to the nanoscale. Amin, O. J., Din, A. D., Golias, E., Niu, Y., Zakharov, A., Fromage, S. C., Fields, C. J. B., Heywood, S. L., Cousins, R. B., Krempasky, J., Dil, J. H., Kriegner, D., Kiraly, B., Campion, R. P., Rushforth, A. W., Edmonds, K. W., Dhesi, S. S., Šmejkal, L., Jungwirth, T., & Wadley, P. (2024). https://arxiv.org/abs/2405.02409v1
Antiferromagnetic spintronics and beyond. Dal Din, A., Amin, O. J., Wadley, P., & Edmonds, K. W. (2024). Npj Spintronics 2024 2:1, 2(1), 1–8. https://doi.org/10.1038/s44306-024-00029-0
Cathodoluminescence spectroscopy of monolayer hexagonal boron nitride. Shima, K., Cheng, T. S., Mellor, C. J., Beton, P. H., Elias, C., Valvin, P., Gil, B., Cassabois, G., Novikov, S. V., & Chichibu, S. F. (2024). Scientific Reports 2024 14:1, 14(1), 1–8. https://doi.org/10.1038/s41598-023-50502-9
Defect-induced doping and chemisorption of O2 in Se deficient GaSe monolayers. Bradford, J., Rahman, K., Felton, J., Cheng, T. S., Shiffa, M., Beton, P. H., Saywell, A., Greenaway, M. T., Novikov, S. V., O, J. N., & LastNamePatanè, A. (2024). 2D Materials, 12(1), 015019–015019. https://doi.org/10.1088/2053-1583/AD9D57
Epitaxy of GaSe Coupled to Graphene: From In Situ Band Engineering to Photon Sensing. Bradford, J., Dewes, B. T., Shiffa, M., Cottam, N. D., Rahman, K., Cheng, T. S., Novikov, S. V., Makarovsky, O., O’shea, J. N., Beton, P. H., Lara-Avila, S., Harknett, J., Greenaway, M. T., Patanè, A., Bradford, J., Dewes, B. T., Shiffa, M., Cottam, N. D., Rahman, K., … Greenaway, M. T. (2024a). Small, 20(40), 2404809–2404809. https://doi.org/10.1002/SMLL.202404809
H1dd3n variab7es. Moriarty, P. (2024). Physics World, 37(7), 48–48. https://doi.org/10.1088/2058-7058/37/07/30
High-temperature Brown-Zak oscillations in graphene/hBN moiré field effect transistor fabricated using molecular beam epitaxy. Makarovsky, O., Hill, R. J. A., Cheng, T. S., Summerfield, A., Taniguchi, T., Watanabe, K., Mellor, C. J., Patanè, A., Eaves, L., Novikov, S. V., & Beton, P. H. (2024). Communications Materials 2024 5:1, 5(1), 1–6. https://doi.org/10.1038/s43246-024-00633-x
Hybrid coherent control of magnons in a ferromagnetic phononic resonator excited by laser pulses. Scherbakov, A. V., Carr, A. D., Linnik, T. L., Kukhtaruk, S. M., Armour, A. D., Nadzeyka, A., Rushforth, A. W., Akimov, A. V., & Bayer, M. (2024). Physical Review Research, 6(1), L012019–L012019. https://doi.org/10.1103/PHYSREVRESEARCH.6.L012019
Magnetic domain engineering in antiferromagnetic CuMnAs and Mn 2 Au. Reimers, S., Gomonay, O., Amin, O. J., Krizek, F., Barton, L. X., Lytvynenko, Y., Poole, S. F., Novák, V., Campion, R. P., Maccherozzi, F., Carbone, G., Björling, A., Niu, Y., Golias, E., Kriegner, D., Sinova, J., Kläui, M., Jourdan, M., Dhesi, S. S., … Wadley, P. (2024). Physical Review Applied, 21(6). https://doi.org/10.1103/PHYSREVAPPLIED.21.064030
Nanoscale imaging and control of altermagnetism in MnTe. Amin, O. J., Dal Din, A., Golias, E., Niu, Y., Zakharov, A., Fromage, S. C., Fields, C. J. B., Heywood, S. L., Cousins, R. B., Maccherozzi, F., Krempaský, J., Dil, J. H., Kriegner, D., Kiraly, B., Campion, R. P., Rushforth, A. W., Edmonds, K. W., Dhesi, S. S., Šmejkal, L., … Wadley, P. (2024). Nature 2024 636:8042, 636(8042), 348–353. https://doi.org/10.1038/s41586-024-08234-x
Néel vector waves in antiferromagnetic CuMnAs excited by surface acoustic waves. Khaliq, M. W., Amin, O. J., Hernández-Mínguez, A., Rovirola, M., Casals, B., Omari, K., Ruiz-Gómez, S., Finizio, S., Campion, R. P., Edmonds, K. W., Novák, V., Mandziak, A., Aballe, L., Niño, M. A., Hernàndez, J. M., Wadley, P., Macià, F., & Foerster, M. (2024). Physical Review Materials, 8(8). https://doi.org/10.1103/PHYSREVMATERIALS.8.084406
On-Surface Synthesis of Ni-Porphyrin-Doped Graphene Nanoribbons. Edmondson, M., Clarke, M., O’Shea, J. N., Chen, Q., Anderson, H. L., & Saywell, A. (2024). ACS Nano, 18, 33390–33397. https://doi.org/10.1021/ACSNANO.4C09188
Porphyrin-fused graphene nanoribbons. Chen, Q., Lodi, A., Zhang, H., Gee, A., Wang, H. I., Kong, F., Clarke, M., Edmondson, M., Hart, J., O’Shea, J. N., Stawski, W., Baugh, J., Narita, A., Saywell, A., Bonn, M., Müllen, K., Bogani, L., & Anderson, H. L. (2024). Nature Chemistry 2024, 1–8. https://doi.org/10.1038/s41557-024-01477-1
Selective Photocatalytic Reduction of CO2 to CH4 over NU-1000 Metal-Organic Frameworks. Korhonen, P., Thangamuthu, M., Castaldelli, E., Diego-Lopez, A., Weilhard, A., Clowes, R., O’shea, J. N., Laybourn, A., & Lanterna, A. E. (2024). https://doi.org/10.26434/CHEMRXIV-2024-RWKXV
Spatially-resolved UV-C emission in epitaxial monolayer boron nitride. Rousseau, A., Plo, J., Valvin, P., Cheng, T. S., Bradford, J., James, T. S. S., Wrigley, J., Mellor, C. J., Beton, P. H., Novikov, S. V., Jacques, V., Gil, B., & Cassabois, G. (2024). 2D Materials, 11(2), 025026–025026. https://doi.org/10.1088/2053-1583/AD2F45
Structure and chemical composition of the Mg electrode during cycling in a simple glyme electrolyte. Dimogiannis, K., Sankowski, A., Holc, C., Parmenter, C. D. J., Newton, G. N., Walsh, D. A., O’Shea, J., Khlobystov, A. N., & Johnson, L. R. (2024). Energy Storage Materials, 67, 103280–103280. https://doi.org/10.1016/J.ENSM.2024.103280
Template-Directed Synthesis of Strained meso-meso-Linked Porphyrin Nanorings. Van Raden, J. M., Deng, J. R., Gotfredsen, H., Hergenhahn, J., Clarke, M., Edmondson, M., Hart, J., O’Shea, J. N., Duarte, F., Saywell, A., & Anderson, H. L. (2024). Angewandte Chemie International Edition, 63(14), e202400103–e202400103. https://doi.org/10.1002/ANIE.202400103
Thermally stable Peltier controlled vacuum chamber for electrical transport measurements. Poole, S. F., Amin, O. J., Solomon, A., Barton, L. X., Campion, R. P., Edmonds, K. W., & Wadley, P. (2024). Review of Scientific Instruments, 95(3), 35108–35108. https://doi.org/10.1063/5.0186155/3268710
Wafer-Scale Two-Dimensional Semiconductors for Deep UV Sensing. Shiffa, M., Dewes, B. T., Bradford, J., Cottam, N. D., Cheng, T. S., Mellor, C. J., Makarovskiy, O., Rahman, K., O’Shea, J. N., Beton, P. H., Novikov, S. V., Ben, T., Gonzalez, D., Xie, J., Zhang, L., & Patanè, A. (2024). Small, 20(7), 2305865–2305865. https://doi.org/10.1002/SMLL.202305865
X-Ray Magnetic Circular Dichroism in Altermagnetic α -MnTe. Hariki, A., Dal Din, A., Amin, O. J., Yamaguchi, T., Badura, A., Kriegner, D., Edmonds, K. W., Campion, R. P., Wadley, P., Backes, D., Veiga, L. S. I., Dhesi, S. S., Springholz, G., Šmejkal, L., Výborný, K., Jungwirth, T., & Kuneš, J. (2024). Physical Review Letters, 132(17). https://doi.org/10.1103/PHYSREVLETT.132.176701
2023 |
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Adsorption structure of iron phthalocyanine and titanyl phthalocyanine on Cu(1 1 1). Stoodley, M. A., Klein, B. P., Clarke, M., Williams, L. B. S., Rochford, L. A., Ferrer, P., Grinter, D. C., Saywell, A., & Duncan, D. A. (2023). Inorganica Chimica Acta, 557, 121679–121679. https://doi.org/10.1016/J.ICA.2023.121679
Altermagnetic lifting of Kramers spin degeneracy. Krempaský, J., Šmejkal, L., D’Souza, S. W., Hajlaoui, M., Springholz, G., Uhlířová, K., Alarab, F., Constantinou, P. C., Strokov, V., Usanov, D., Pudelko, W. R., González-Hernández, R., Hellenes, A. B., Jansa, Z., Reichlová, H., Šobáň, Z., Betancourt, R. D. G., Wadley, P., Sinova, J., … Jungwirth, T. (2023). https://arxiv.org/abs/2308.10681v1
Antiferromagnetic half-skyrmions electrically generated and controlled at room temperature. Amin, O. J., Poole, S. F., Reimers, S., Barton, L. X., Dal Din, A., Maccherozzi, F., Dhesi, S. S., Novák, V., Krizek, F., Chauhan, J. S., Campion, R. P., Rushforth, A. W., Jungwirth, T., Tretiakov, O. A., Edmonds, K. W., & Wadley, P. (2023). Nature Nanotechnology 2023 18:8, 18(8), 849–853. https://doi.org/10.1038/s41565-023-01386-3
Beyond the quantum woo-niverse. Moriarty, P. (2023a). Physics World, 36(6), 56–57. https://doi.org/10.1088/2058-7058/36/06/31
Bi2Se3 interlayer treatments affecting the Y3Fe5O12 (YIG) platinum spin Seebeck effect. Hu, Y., Weir, M. P., Pereira, H. J., Amin, O. J., Pitcairn, J., Cliffe, M. J., Rushforth, A. W., Kunakova, G., Niherysh, K., Korolkov, V., Kertfoot, J., Makarovsky, O., & Woodward, S. (2023). Applied Physics Letters, 123(22), 223902–223902. https://doi.org/10.1063/5.0157778/2924895
Bimetallic NiPt nanoparticles-enhanced catalyst supported on alginate-based biohydrogels for sustainable hydrogen production. Ramírez, O., Bonardd, S., Saldías, C., Kroff, M., O’Shea, J. N., Díaz Díaz, D., & Leiva, A. (2023). International Journal of Biological Macromolecules, 225, 494–502. https://doi.org/10.1016/J.IJBIOMAC.2022.11.106
Covalent Template-Directed Synthesis of a Spoked 18-Porphyrin Nanoring**. Majewski, M. A., Stawski, W., Raden, J. M. V., Clarke, M., Hart, J., O’Shea, J. N., Saywell, A., & Anderson, H. L. (2023). Angewandte Chemie, 135(18), e202302114–e202302114. https://doi.org/10.1002/ANGE.202302114
Electrical control of 180° domain walls in an antiferromagnet. Amin, O. J., Reimers, S., Maccherozzi, F., Dhesi, S. S., Novák, V., Campion, R. P., Edmonds, K. W., & Wadley, P. (2023). APL Materials, 11(9). https://doi.org/10.1063/5.0156508/2911563
Electroluminescence from a phthalocyanine monolayer encapsulated in a van der Waals tunnel diode. James, T., Bradford, J., Kerfoot, J., Korolkov, V. V., Alkhamisi, M., Taniguchi, T., Watanabe, K., Nizovtsev, A. S., Antolín, E., Besley, E., Svatek, S. A., & Beton, P. H. (2023). Molecular Physics, 121(7–8), 7–8. https://doi.org/10.1080/00268976.2023.2197081
Enhanced Photon-Phonon Interaction in WSe2 Acoustic Nanocavities. Carr, A. D., Ruppert, C., Samusev, A. K., Magnabosco, G., Vogel, N., Linnik, T. L., Rushforth, A. W., Bayer, M., Scherbakov, A. V., & Akimov, A. V. (2023). ACS Photonics, 11, 1147–1155. https://doi.org/10.1021/ACSPHOTONICS.3C01601
Experimental electronic structure of the electrically switchable antiferromagnet CuMnAs. Linn, A. G., Hao, P., Gordon, K. N., Narayan, D., Berggren, B. S., Speiser, N., Reimers, S., Campion, R. P., Novák, V., Dhesi, S. S., Kim, T. K., Cacho, C., Šmejkal, L., Jungwirth, T., Denlinger, J. D., Wadley, P., & Dessau, D. S. (2023). Npj Quantum Materials 2023 8:1, 8(1), 1–8. https://doi.org/10.1038/s41535-023-00554-x
Graphene nanoribbons with hBN passivated edges grown by high-temperature molecular beam epitaxy. Bradford, J., Cheng, T. S., James, T. S. S., Khlobystov, A. N., Mellor, C. J., Watanabe, K., Taniguchi, T., Novikov, S. V., & Beton, P. H. (2023). 2D Materials, 10(3), 035035–035035. https://doi.org/10.1088/2053-1583/ACDEFC
Lithium Iron Phosphate/Carbon (LFP/C) Composite Using Nanocellulose as a Reducing Agent and Carbon Source. Kroff, M., Hevia, S. A., O’Shea, J. N., Muro, I. G. de, Palomares, V., Rojo, T., & del Río, R. (2023). Polymers, 15(12), 2628–2628. https://doi.org/10.3390/POLYM15122628/S1
Magnetic domain engineering in antiferromagnetic CuMnAs and Mn$_2$Au devices. Reimers, S., Gomonay, O., Amin, O. J., Krizek, F., Barton, L. X., Lytvynenko, Y., Poole, S. F., Novák, V., Campion, R. P., Maccherozzi, F., Carbone, D., Björling, A., Niu, Y., Golias, E., Kriegner, D., Sinova, J., Kläui, M., Jourdan, M., Dhesi, S. S., … Wadley, P. (2023). https://arxiv.org/abs/2302.09550v3
Magneto-Acoustic Waves in antiferromagnetic CuMnAs excited by Surface Acoustic Waves. Khaliq, M. W., Amin, O., Hernández-Mínguez, A., Rovirola, M., Casals, B., Omari, K., Ruiz-Gómez, S., Finizio, S., Campion, R. P., Edmonds, K. W., Novak, V., Mandziak, A., Aballe, L., Niño, M. A., Hernàndez, J. M., Wadley, P., Macià, F., & Foerster, M. (2023). https://arxiv.org/abs/2309.08893v1
Magneto-Acoustic Waves in antiferromagnetic CuMnAs excited by Surface Acoustic Waves. Waqas Khaliq, M., Amin, O., Hernández-Mínguez, A., Rovirola, M., Casals, B., Omari, K., Ruiz-Gómez, S., Finizio, S., Campion, R. P., Edmonds, K. W., Novak, V., Mandziak, A., Aballe, L., Niño, M. A., Hernàndez, J. M., Wadley, P., Macià, F., & Foerster, M. (2023). arXiv, arXiv:2309.08893-arXiv:2309.08893. https://doi.org/10.48550/ARXIV.2309.08893
Marrying plasmonic earth-abundant metals with catalytic metals for visible-light-promoted hydrogen generation on biobased materials. Ramírez, O., Castillo, S., Bonardd, S., Saldías, C., O’Shea, J. N., Clive, C. P., Díaz, D. D., & Leiva, A. (2023). Journal of Environmental Chemical Engineering, 11(5), 111036–111036. https://doi.org/10.1016/J.JECE.2023.111036
Nanostructured, Alkaline Titanate-Converted, and Heat-Treated Ti6Al4V Microspheres via Wet-Chemical Alkaline Modification and their ORR Electrocatalytic Response. Wadge, M. D., Bird, M. A., Sankowski, A., Constantin, H., Fay, M. W., Cooper, T. P., O’Shea, J. N., Khlobystov, A. N., Walsh, D. A., Johnson, L. R., Felfel, R. M., Ahmed, I., & Grant, D. M. (2023). Advanced Materials Interfaces, 10(5), 2201523–2201523. https://doi.org/10.1002/ADMI.202201523
On-chip phonon-magnon reservoir for neuromorphic computing. Yaremkevich, D. D., Scherbakov, A. V., De Clerk, L., Kukhtaruk, S. M., Nadzeyka, A., Campion, R., Rushforth, A. W., Savel’ev, S., Balanov, A. G., & Bayer, M. (2023). Nature Communications 2023 14:1, 14(1), 1–10. https://doi.org/10.1038/s41467-023-43891-y
On-surface polymerisation and self-assembly of DPP-based molecular wires. Clarke, M., Bellamy-Carter, A., Malagreca, F., Hart, J., Argent, S. P., O’Shea, J. N., Amabilino, D. B., & Saywell, A. (2023). Molecular Systems Design & Engineering, 8(5), 681–689. https://doi.org/10.1039/D2ME00232A
Photosensitisation of inkjet printed graphene with stable all-inorganic perovskite nanocrystals. Austin, J. S., Cottam, N. D., Zhang, C., Wang, F., Gosling, J. H., Nelson-Dummet, O., James, T. S. S., Beton, P. H., Trindade, G. F., Zhou, Y., Tuck, C. J., Hague, R., Makarovsky, O., & Turyanska, L. (2023). Nanoscale, 15(5), 2134–2142. https://doi.org/10.1039/D2NR06429D
Self-assembly and tiling of a prochiral hydrogen-bonded network: Bi-isonicotinic acid on coinage metal surfaces. Allen, A., Abdur Rashid, M., Rahe, P., Jarvis, S. P., O’Shea, J. N., Dunn, J. L., & Moriarty, P. (2023). Molecular Physics, 121(7–8). https://doi.org/10.1080/00268976.2023.2192824
Self-metalation of tetraphenyl porphyrin on Au(111): Structural characterisation via X-ray standing wave analysis. Frampton, E. S., Edmondson, M., Judd, C. J., Duncan, D. A., Jones, R. G., & Saywell, A. (2023). Inorganica Chimica Acta, 558, 121718–121718. https://doi.org/10.1016/J.ICA.2023.121718
Shreddinger’s equation. Moriarty, P. (2023b). Physics World, 36(9), 44–44. https://doi.org/10.1088/2058-7058/36/09/28
Studying manganese carbonyl photochemistry in a permanently porous metal–organic framework. Young, R. J., Huxley, M. T., Wu, L., Hart, J., O’Shea, J., Doonan, C. J., Champness, N. R., & Sumby, C. J. (2023). Chemical Science, 14(35), 9409–9417. https://doi.org/10.1039/D3SC03553K
The adsorption and XPS of triphenylamine-based organic dye molecules on rutile TiO2(110) prepared by UHV-compatible electrospray deposition. Alharbi, N., Hart, J., & O’Shea, J. N. (2023). Surface Science, 735, 122323–122323. https://doi.org/10.1016/J.SUSC.2023.122323
The Mg Electrode Cycling Mechanism in Simple Salt Glyme Electrolytes. Sankowski, A., Dimogiannis, K., Holc, C., Parmenter, C., Newton, G., Walsh, D., O’Shea, J., Khlobystov, A., & Johnson, L. (2023). ECS Meeting Abstracts, MA2023-02(4), 600–600. https://doi.org/10.1149/MA2023-024600MTGABS
Ultrafast magnetoacoustics in Galfenol nanostructures. Scherbakov, A. V., Linnik, T. L., Kukhtaruk, S. M., Yakovlev, D. R., Nadzeyka, A., Rushforth, A. W., Akimov, A. V., & Bayer, M. (2023). Photoacoustics, 34, 100565–100565. https://doi.org/10.1016/J.PACS.2023.100565
X-ray Magnetic Circular Dichroism in Altermagnetic $\alpha$-MnTe. Hariki, A., Dal Din, A., Amin, O. J., Yamaguchi, T., Badura, A., Kriegner, D., Edmonds, K. W., Campion, R. P., Wadley, P., Backes, D., Veiga, L. S. I., Dhesi, S. S., Springholz, G., Smejkal, L. ˇ, V´yborn´y, K., V´yborn´y, V., Jungwirth, T., & Kuneš, J. (2023). https://arxiv.org/abs/2305.03588v2
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Atomically sharp domain walls in an antiferromagnet. Krizek, F., Reimers, S., Kašpar, Z., Marmodoro, A., Michalička, J., Man, O., Edström, A., Amin, O. J., Edmonds, K. W., Campion, R. P., Maccherozzi, F., Dhesi, S. S., Zubáč, J., Kriegner, D., Carbone, D., Železný, J., Výborný, K., Olejník, K., Novák, V., … Jungwirth, T. (2022). Science Advances, 8(13), 3535–3535. https://doi.org/10.1126/SCIADV.ABN3535
Bending a photonic wire into a ring. Gotfredsen, H., Deng, J. R., Van Raden, J. M., Righetto, M., Hergenhahn, J., Clarke, M., Bellamy-Carter, A., Hart, J., O’Shea, J., Claridge, T. D. W., Duarte, F., Saywell, A., Herz, L. M., & Anderson, H. L. (2022). Nature Chemistry 2022 14:12, 14(12), 1436–1442. https://doi.org/10.1038/s41557-022-01032-w
Coherent Phononics of van der Waals Layers on Nanogratings. Yan, W., Akimov, A. V., Barra-Burillo, M., Bayer, M., Bradford, J., Gusev, V. E., Hueso, L. E., Kent, A., Kukhtaruk, S., Nadzeyka, A., Patanè, A., Rushforth, A. W., Scherbakov, A. V., Yaremkevich, D. D., & Linnik, T. L. (2022). Nano Letters, 22(16), 6509–6515. https://doi.org/10.1021/ACS.NANOLETT.2C01542
Defect-driven antiferromagnetic domain walls in CuMnAs films. Reimers, S., Kriegner, D., Gomonay, O., Carbone, D., Krizek, F., Novák, V., Campion, R. P., Maccherozzi, F., Björling, A., Amin, O. J., Barton, L. X., Poole, S. F., Omari, K. A., Michalička, J., Man, O., Sinova, J., Jungwirth, T., Wadley, P., Dhesi, S. S., & Edmonds, K. W. (2022). Nature Communications 2022 13:1, 13(1), 1–7. https://doi.org/10.1038/s41467-022-28311-x
Electrocatalytic hydrogen evolution over micro and mesoporous cobalt metal-organic frameworks. Iqbal, B., Laybourn, A., O’Shea, J. N., Argent, S. P., & Zaheer, M. (2022). Molecular Catalysis, 531, 112711–112711. https://doi.org/10.1016/J.MCAT.2022.112711
Exciton and Phonon Radiative Linewidths in Monolayer Boron Nitride. Cassabois, G., Fugallo, G., Elias, C., Valvin, P., Rousseau, A., Gil, B., Summerfield, A., Mellor, C. J., Cheng, T. S., Eaves, L., Foxon, C. T., Beton, P. H., Lazzeri, M., Segura, A., & Novikov, S. V. (2022). Physical Review X, 12(1). https://doi.org/10.1103/PHYSREVX.12.011057
Highly efficient and selective aqueous phase hydrogenation of aryl ketones, aldehydes, furfural and levulinic acid and its ethyl ester catalyzed by phosphine oxide-decorated polymer immobilized ionic liquid-stabilized ruthenium nanoparticles. Doherty, S., Knight, J. G., Backhouse, T., Tran, T. S. T., Paterson, R., Stahl, F., Alharbi, H. Y., Chamberlain, T. W., Bourne, R. A., Stones, R., Griffiths, A., White, J. P., Aslam, Z., Hardare, C., Daly, H., Hart, J., Temperton, R. H., O’Shea, J. N., & Rees, N. H. (2022). Catalysis Science & Technology, 12(11), 3549–3567. https://doi.org/10.1039/D2CY00205A
Hydrogen-Induced Conversion of SnS2 into SnS or Sn: A Route to Create SnS2/SnS Heterostructures. Felton, J., Blundo, E., Kudrynskyi, Z., Ling, S., Bradford, J., Pettinari, G., Cooper, T., Wadge, M., Kovalyuk, Z., Polimeni, A., Beton, P., Grant, D., Walker, G., Patanè, A., Felton, J., Kudrynskyi, Z., Bradford, J., Beton, P., Patanè, A., … Pettinari, G. (2022). Small, 18(33), 2202661–2202661. https://doi.org/10.1002/SMLL.202202661
Probing the manipulation of antiferromagnetic order in CuMnAs films using neutron diffraction. Poole, S. F., Barton, L. X., Wang, M., Manuel, P., Khalyavin, D., Langridge, S., Edmonds, K. W., Campion, R. P., Novák, V., & Wadley, P. (2022). Applied Physics Letters, 121(5), 52402–52402. https://doi.org/10.1063/5.0103390/2834075
Spectrum evolution and chirping of laser-induced spin wave packets in thin iron films. Filatov, I. A., Gerevenkov, P. I., Wang, M., Rushforth, A. W., Kalashnikova, A. M., & Khokhlov, N. E. (2022). Applied Physics Letters, 120(11), 112404–112404. https://doi.org/10.1063/5.0077195/2833285
Spin-Orbit Torque (SOT) Materials and Devices. Li, Y., Edmonds, K. W., & Wang, K. (2022). Spintronics: Materials, Devices, and Applications, 113–138. https://doi.org/10.1002/9781119698968.CH5
Submolecular Resolution Imaging of P3HT:PCBM Nanostructured Films by Atomic Force Microscopy: Implications for Organic Solar Cells. Liirò-Peluso, L., Wrigley, J., Amabilino, D. B., & Beton, P. H. (2022). ACS Applied Nano Materials, 5(10), 13794–13804. https://doi.org/10.1021/ACSANM.2C01399
Transition magnon modes in thin ferromagnetic nanogratings. Kukhtaruk, S. M., Rushforth, A. W., Godejohann, F., Scherbakov, A. V., & Bayer, M. (2022). Physical Review B, 106(6), 064411–064411. https://doi.org/10.1103/PHYSREVB.106.064411
Understanding the Mg Cycling Mechanism on a MgTFSI-Glyme Electrolyte. Dimogiannis, K., Sankowski, A., Holc, C., Newton, G., Walsh, D. A., O’Shea, J., Khlobystov, A., & Sankowski, A. (2022). ECS Meeting Abstracts, MA2022-01(4), 574–574. https://doi.org/10.1149/MA2022-014574MTGABS
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A soft x-ray probe of a titania photoelectrode sensitized with a triphenylamine dye. Temperton, R. H., Hart, J., Verykokkos, N., Gibson, E., & O’Shea, J. N. (2021). Journal of Chemical Physics, 154(23), 234707–234707. https://doi.org/10.1063/5.0050531/200186
Additively manufactured ultra-high vacuum chamber for portable quantum technologies. Cooper, N., Coles, L. A., Everton, S., Maskery, I., Campion, R. P., Madkhaly, S., Morley, C., O’Shea, J., Evans, W., Saint, R., Krüger, P., Oručević, F., Tuck, C., Wildman, R. D., Fromhold, T. M., & Hackermüller, L. (2021). Additive Manufacturing, 40, 101898–101898. https://doi.org/10.1016/J.ADDMA.2021.101898
An in situ exploration of subsurface defect migration to a liquid water-exposed rutile TiO2(110) surface by XPS. Ahmed, M. H. M., Temperton, R. H., & O’Shea, J. N. (2021). Surface and Interface Analysis, 53(12), 1013–1019. https://doi.org/10.1002/SIA.6906
Band gap measurements of monolayer h-BN and insights into carbon-related point defects. Román, R. J. P., Costa, F. J. R. C., Zobelli, A., Elias, C., Valvin, P., Cassabois, G., Gil, B., Summerfield, A., Cheng, T. S., Mellor, C. J., Beton, P. H., Novikov, S. V., & Zagonel, L. F. (2021). 2D Materials, 8(4), 044001–044001. https://doi.org/10.1088/2053-1583/AC0D9C
Characterisation and Interpretation of On-Surface Chemical Reactions Studied by Ultra-High-Resolution Scanning Probe Microscopy. Sweetman, A., Champness, N. R., & Saywell, A. (2021). Supramolecular Chemistry on Surfaces: 2D Networks and 2D Structures, 9–42. https://doi.org/10.1002/9783527816699.CH2
Chemical shielding of H2O and HF encapsulated inside a C60 cage. Jarvis, S. P., Sang, H., Junqueira, F., Gordon, O., Hodgkinson, J. E. A., Saywell, A., Rahe, P., Mamone, S., Taylor, S., Sweetman, A., Leaf, J., Duncan, D. A., Lee, T. L., Thakur, P. K., Hoffman, G., Whitby, R. J., Levitt, M. H., Held, G., Kantorovich, L., … Jones, R. G. (2021). Communications Chemistry 2021 4:1, 4(1), 1–7. https://doi.org/10.1038/s42004-021-00569-0
Cyclic Single Atom Vertical Manipulation on a Nonmetallic Surface. Abbasi-Pérez, D., Sang, H., Junqueira, F. L. Q., Sweetman, A., Recio, J. M., Moriarty, P., & Kantorovich, L. (2021). Journal of Physical Chemistry Letters, 12(46), 11383–11390. https://doi.org/10.1021/ACS.JPCLETT.1C02271
Effect of magnetic anisotropy relaxation on laser-induced magnetization precession in thin galfenol films. Gerevenkov, P. I., Kuntu, D. V., Filatov, I. A., Shelukhin, L. A., Wang, M., Pattnaik, D. P., Rushforth, A. W., Kalashnikova, A. M., & Khokhlov, N. E. (2021). Physical Review Materials, 5(9), 094407–094407. https://doi.org/10.1103/PHYSREVMATERIALS.5.094407
Epitaxy of boron nitride monolayers for graphene-based lateral heterostructures. Wrigley, J., Bradford, J., James, T., Cheng, T. S., Thomas, J., Mellor, C. J., Khlobystov, A. N., Eaves, L., Foxon, C. T., Novikov, S. V., & Beton, P. H. (2021). 2D Materials, 8(3), 034001–034001. https://doi.org/10.1088/2053-1583/ABEA66
Flights of fancy, feet on the ground. Moriarty, P. (2021). Physics World, 34(9), 46–47. https://doi.org/10.1088/2058-7058/34/09/33
Gender issues in fundamental physics: Strumia’s bibliometric analysis fails to account for key confounders and confuses correlation with causation. Ball, P., Britton, T. B., Hengel, E., Moriarty, P., Oliver, R. A., Rippon, G., Saini, A., & Wade, J. (2021). Quantitative Science Studies, 2(1), 263–272. https://doi.org/10.1162/QSS_A_00117
High open-circuit voltage in transition metal dichalcogenide solar cells. Svatek, S. A., Bueno-Blanco, C., Lin, D. Y., Kerfoot, J., Macías, C., Zehender, M. H., Tobías, I., García-Linares, P., Taniguchi, T., Watanabe, K., Beton, P., & Antolín, E. (2021). Nano Energy, 79, 105427–105427. https://doi.org/10.1016/J.NANOEN.2020.105427
Magnetism and magnetoresistance in the critical region of a dilute ferromagnet. Wang, M., Howells, B., Marshall, R. A., Taylor, J. M., Edmonds, K. W., Rushforth, A. W., Campion, R. P., & Gallagher, B. L. (2021). Scientific Reports 2021 11:1, 11(1), 1–7. https://doi.org/10.1038/s41598-021-81893-2
Origin of C 60 surface reconstruction resolved by atomic force microscopy. Forcieri, L., Taylor, S., Moriarty, P., & Jarvis, S. P. (2021). Physical Review B, 104(20), 205428–205428. https://doi.org/10.1103/PhysRevB.104.205428
Protected Long-Distance Guiding of Hypersound Underneath a Nanocorrugated Surface. Yaremkevich, D. D., Scherbakov, A. V., Kukhtaruk, S. M., Linnik, T. L., Khokhlov, N. E., Godejohann, F., Dyatlova, O. A., Nadzeyka, A., Pattnaik, D. P., Wang, M., Roy, S., Campion, R. P., Rushforth, A. W., Gusev, V. E., Akimov, A. V., & Bayer, M. (2021). ACS Nano, 15(3), 4802–4810. https://doi.org/10.1021/ACSNANO.0C09475
Self-assembly of a strapped linear porphyrin oligomer on HOPG. Bellamy-Carter, A., Roche, C., Anderson, H. L., & Saywell, A. (2021). Scientific Reports 2021 11:1, 11(1), 1–7. https://doi.org/10.1038/s41598-021-99881-x
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A Coordinated Approach to Chemical Reactivity. Moriarty, P. (2020). APS Physics, 13, 28–28.
A LEGO^TM dynamic force “macroscope”. Taylor, D., Smaje, ; H, Moriarty, ; P, Smaje, H., & Moriarty, P. (2020). American Journal of Physics, 88(11), 906–917. https://doi.org/10.1119/10.0001700
Atomic reconstruction in twisted bilayers of transition metal dichalcogenides. Weston, A., Zou, Y., Enaldiev, V., Summerfield, A., Clark, N., Zólyomi, V., Graham, A., Yelgel, C., Magorrian, S., Zhou, M., Zultak, J., Hopkinson, D., Barinov, A., Bointon, T. H., Kretinin, A., Wilson, N. R., Beton, P. H., Fal’ko, V. I., Haigh, S. J., & Gorbachev, R. (2020). Nature Nanotechnology 2020 15:7, 15(7), 592–597. https://doi.org/10.1038/s41565-020-0682-9
Automated Searching and Identification of Self-Organized Nanostructures. Gordon, O. M., Hodgkinson, J. E. A., Farley, S. M., Hunsicker, E. L., & Moriarty, P. J. (2020). Nano Letters, 20(10), 7688–7693. https://doi.org/10.1021/ACS.NANOLETT.0C03213
Bending a photonic wire into a ring. Gotfredsen, H., Deng, J. R., Van Raden, J. M., Righetto, M., Hergenhahn, J., Clarke, M., Bellamy-Carter, A., Hart, J., O’Shea, J., Claridge, T. D. W., Duarte, F., Saywell, A., Herz, L. M., & Anderson, H. L. (2022). Nature Chemistry 2022 14:12, 14(12), 1436–1442. https://doi.org/10.1038/s41557-022-01032-w
Complementary Lateral-Spin–Orbit Building Blocks for Programmable Logic and In-Memory Computing. Zhang, N., Cao, Y., Li, Y., Rushforth, A. W., Ji, Y., Zheng, H., & Wang, K. (2020). Advanced Electronic Materials, 6(8), 2000296–2000296. https://doi.org/10.1002/AELM.202000296
Deterministic magnetic domain wall motion induced by pulsed anisotropy energy. Rushforth, A. W., Rowan-Robinson, R., & Zemen, J. (2020). Journal of Physics D: Applied Physics, 53(16), 164001–164001. https://doi.org/10.1088/1361-6463/AB6CC7
Deterministic Magnetization Switching Using Lateral Spin–Orbit Torque. Cao, Y., Sheng, Y., William Edmonds, K., Ji, Y., Zheng, H., Wang, K., Cao, Y., Sheng, Y., Ji, Y., Zheng, H., Wang, K., & Edmonds, K. W. (2020). Advanced Materials, 32(16), 1907929–1907929. https://doi.org/10.1002/ADMA.201907929
Electrical control of antiferromagnets for the next generation of computing technology. Amin, O. J., Edmonds, K. W., & Wadley, P. (2020). Applied Physics Letters, 117(1), 10501–10501. https://doi.org/10.1063/5.0013917/39017
Embedding human heuristics in machine-learning-enabled probe microscopy. Gordon, O. M., Junqueira, F. L. Q., & Moriarty, P. J. (2020). Machine Learning: Science and Technology, 1(1), 15001–15001. https://doi.org/10.1088/2632-2153/ab42ec
Emerging edge states on the surface of the epitaxial semimetal CuMnAs thin film. Nguyen, G. D., Pitike, K. C., Wadley, P., Cooper, V. R., Yoon, M., Berlijn, T., & Li, A. P. (2020). Applied Physics Letters, 116(6), 61603–61603. https://doi.org/10.1063/1.5130624/8748802
Fluorescence and electroluminescence of j-aggregated polythiophene monolayers on hexagonal boron nitride. Kerfoot, J., Beton, P. H., Svatek, S. A., Korolkov, V. V., Taniguchi, T., Watanabe, K., & Antolin, E. (2020). ACS Nano, 14(10), 13886–13893. https://doi.org/10.1021/ACSNANO.0C06280
Highly efficient hydrogen evolution reaction, plasmon-enhanced by AuNP-L-TiO2NP photocatalysts. Castillo-Rodriguez, J., Ortiz, P. D., Isaacs, M., Martinez, N. P., O’Shea, J. N., Hart, J., Temperton, R., Zarate, X., Contreras, D., & Schott, E. (2020). New Journal of Chemistry, 44(38), 16491–16500. https://doi.org/10.1039/D0NJ03250F
Identifying carbon as the source of visible single-photon emission from hexagonal boron nitride. Mendelson, N., Chugh, D., Reimers, J. R., Cheng, T. S., Gottscholl, A., Long, H., Mellor, C. J., Zettl, A., Dyakonov, V., Beton, P. H., Novikov, S. V., Jagadish, C., Tan, H. H., Ford, M. J., Toth, M., Bradac, C., & Aharonovich, I. (2020). Nature Materials 2020 20:3, 20(3), 321–328. https://doi.org/10.1038/s41563-020-00850-y
Improving the segmentation of scanning probe microscope images using convolutional neural networks. Farley, S., Hodgkinson, J. E. A., Gordon, O. M., Turner, J., Soltoggio, A., Moriarty, P. J., & Hunsicker, E. (2020). Machine Learning: Science and Technology, 2(1), 15015–15015. https://doi.org/10.1088/2632-2153/abc81c
Investigation of magnetic anisotropy and heat dissipation in thin films of compensated antiferromagnet CuMnAs by pump-probe experiment. Surýnek, M., Saidl, V., Kašpar, Z., Novák, V., Campion, R. P., Wadley, P., & Němec, P. (2020). Journal of Applied Physics, 127(23), 233904–233904. https://doi.org/10.1063/5.0006185/1062586
Low-energy switching of antiferromagnetic CuMnAs/GaP using sub-10 nanosecond current pulses. Omari, K. A., Barton, ; L X, Amin, ; O, Campion, ; R P, Rushforth, ; A W, Kent, ; A J, Wadley, ; P, Edmonds, ; K W, Barton, L. X., Amin, O., Campion, R. P., Rushforth, A. W., Kent, A. J., Wadley, P., & Edmonds, K. W. (2020). Journal of Applied Physics, 127(19), 193906–193906. https://doi.org/10.1063/5.0006183
Machine learning at the (sub)atomic scale: Next generation scanning probe microscopy. Gordon, O. M., & Moriarty, P. J. (2020). Machine Learning: Science and Technology, 1(2), 23001–23001. https://doi.org/10.1088/2632-2153/ab7d2f
Magneto-Seebeck microscopy of domain switching in collinear antiferromagnet CuMnAs. Janda, T., Godinho, J., Ostatnicky, T., Pfitzner, E., Ulrich, G., Hoehl, A., Reimers, S., Šobáň, Z., Metzger, T., Reichlová, H., Novák, V., Campion, R. P., Heberle, J., Wadley, P., Edmonds, K. W., Amin, O. J., Chauhan, J. S., Dhesi, S. S., Maccherozzi, F., … Wunderlich, J. (2020). Physical Review Materials, 4(9), 094413–094413. https://doi.org/10.1103/PHYSREVMATERIALS.4.094413
Magnon polaron formed by selectively coupled coherent magnon and phonon modes of a surface patterned ferromagnet. Godejohann, F., Scherbakov, A. V., Kukhtaruk, S. M., Poddubny, A. N., Yaremkevich, D. D., Wang, M., Nadzeyka, A., Yakovlev, D. R., Rushforth, A. W., Akimov, A. V., & Bayer, M. (2020). Physical Review B, 102(14), 144438–144438. https://doi.org/10.1103/PHYSREVB.102.144438
Merging phonons and magnons in periodic ferromagnetic nanostructures. Scherbakov, A., Godejohann, F., Kukhtaruk, S., Poddubny, A., Yaremkevich, D., Wang, M., Nadzeyka, A., Yakovlev, D., Rushforth, A., Akimov, A., & Bayer, M. (2020). 3043–3043. https://doi.org/10.48465/FA.2020.0746
Modeling Photocathode Performance Using MedeA-VASP Simulation Software. Williams, J. O. D., Lapington, J. S., Campion, R., Foxon, T., Temperton, R. H., & O’Shea, J. N. (2020). IEEE Transactions on Nuclear Science, 67(9), 1987–1992. https://doi.org/10.1109/TNS.2020.3011355
Molecular beam epitaxy of CuMnAs. Krizek, F., Kašpar, Z., Vetushka, A., Kriegner, D., Fiordaliso, E. M., Michalicka, J., Man, O., Zubáč, J., Brajer, M., Hills, V. A., Edmonds, K. W., Wadley, P., Campion, R. P., Olejník, K., Jungwirth, T., & Novák, V. (2020). Physical Review Materials, 4(1), 014409–014409. https://doi.org/10.1103/PHYSREVMATERIALS.4.014409
Molecular Diffusion and Self-Assembly: Quantifying the Influence of Substrate hcp and fcc Atomic Stacking. Edmondson, M., & Saywell, A. (2022). Nano Letters, 22(20), 8210–8215. https://doi.org/10.1021/ACS.NANOLETT.2C02895
Molecular Quantum Rings Formed from a π -Conjugated Macrocycle. Judd, C. J., Nizovtsev, A. S., Plougmann, R., Kondratuk, D. V., Anderson, H. L., Besley, E., & Saywell, A. (2020). Physical Review Letters, 125(20), 206803–206803. https://doi.org/10.1103/PHYSREVLETT.125.206803
Natural optical activity as the origin of the large chiroptical properties in π-conjugated polymer thin films. Wade, J., Hilfiker, J. N., Brandt, J. R., Liirò-Peluso, L., Wan, L., Shi, X., Salerno, F., Ryan, S. T. J., Schöche, S., Arteaga, O., Jávorfi, T., Siligardi, G., Wang, C., Amabilino, D. B., Beton, P. H., Campbell, A. J., & Fuchter, M. J. (2020). Nature Communications 2020 11:1, 11(1), 1–11. https://doi.org/10.1038/s41467-020-19951-y
On-surface chemical reactions characterised by ultra-high resolution scanning probe microscopy. Sweetman, A., Champness, N., Saywell, A., Adam Sweetman, S., Champness, N. R., Soc Rev, C., Zhang, C., & Pu, K. (2020). Chemical Society Reviews, 49(13), 4189–4202. https://doi.org/10.1039/D0CS00166J
Order, disorder, and metalation of tetraphenylporphyrin (2 H -TPP) on Au(111). Edmondson, M., Frampton, E. S., Judd, C. J., Champness, N. R., Jones, R. G., & Saywell, A. (2022). Chemical Communications, 58(42), 6247–6250. https://doi.org/10.1039/D2CC00820C
Production and processing of graphene and related materials. Backes, C., Abdelkader, A. M., Alonso, C., Andrieux-Ledier, A., Arenal, R., Azpeitia, J., Balakrishnan, N., Banszerus, L., Barjon, J., Bartali, R., Bellani, S., Berger, C., Berger, R., Ortega, M. M. B., Bernard, C., Beton, P. H., Beyer, A., Bianco, A., Bøggild, P., … Garcia-Hernandez, M. (2020). 2D Materials, 7(2), 022001–022001. https://doi.org/10.1088/2053-1583/AB1E0A
Quadruped Molecular Anchoring to an Insulator: Functionalized Ferrocene on CaF 2 Bulk and Thin Film Surfaces. Laflö, L., Schlage, F. A., Kantorovich, L., Moriarty, P. J., Reichling, M., & Rahe, P. (2020). J. Phys. Chem. C, 124, 9907–9907. https://doi.org/10.1021/acs.jpcc.0c00115
Quenching of an antiferromagnet into high resistivity states using electrical or ultrashort optical pulses. Kašpar, Z., Surýnek, M., Zubáč, J., Krizek, F., Novák, V., Campion, R. P., Wörnle, M. S., Gambardella, P., Marti, X., Němec, P., Edmonds, K. W., Reimers, S., Amin, O. J., Maccherozzi, F., Dhesi, S. S., Wadley, P., Wunderlich, J., Olejník, K., & Jungwirth, T. (2020). Nature Electronics 2020 4:1, 4(1), 30–37. https://doi.org/10.1038/s41928-020-00506-4
Resonant thermal energy transfer to magnons in a ferromagnetic nanolayer. Kobecki, M., Scherbakov, A. V., Linnik, T. L., Kukhtaruk, S. M., Gusev, V. E., Pattnaik, D. P., Akimov, I. A., Rushforth, A. W., Akimov, A. V., & Bayer, M. (2020). Nature Communications 2020 11:1, 11(1), 1–7. https://doi.org/10.1038/s41467-020-17635-1
Resonant tunnelling into the two-dimensional subbands of InSe layers. Kudrynskyi, Z. R., Kerfoot, J., Mazumder, D., Greenaway, M. T., Vdovin, E. E., Makarovsky, O., Kovalyuk, Z. D., Eaves, L., Beton, P. H., & Patanè, A. (2020). Communications Physics 2020 3:1, 3(1), 1–7. https://doi.org/10.1038/s42005-020-0290-x
Spectrum evolution of magnetostatic waves excited through ultrafast laser-induced heating. Filatov, I. A., Gerevenkov, P. I., Wang, M., Rushforth, A. W., Kalashnikova, A. M., & Khokhlov, N. E. (2020). Journal of Physics: Conference Series, 1697(1), 012193–012193. https://doi.org/10.1088/1742-6596/1697/1/012193
Spin flop and crystalline anisotropic magnetoresistance in CuMnAs. Wang, M., Andrews, C., Reimers, S., Amin, O. J., Wadley, P., Campion, R. P., Poole, S. F., Felton, J., Edmonds, K. W., Gallagher, B. L., Rushforth, A. W., Makarovsky, O., Gas, K., Sawicki, M., Kriegner, D., Zubáč, J., Olejník, K., Novák, V., Jungwirth, T., … MacCherozzi, F. (2020a). Physical Review B, 101(9), 094429–094429. https://doi.org/10.1103/PHYSREVB.101.094429
Step-flow growth of graphene-boron nitride lateral heterostructures by molecular beam epitaxy. Thomas, J., Bradford, J., Cheng, T. S., Summerfield, A., Wrigley, J., Mellor, C. J., Khlobystov, A. N., Foxon, C. T., Eaves, L., Novikov, S. V., & Beton, P. H. (2020). 2D Materials, 7(3), 035014–035014. https://doi.org/10.1088/2053-1583/AB89E7
Structural characterisation of molecular conformation and the incorporation of adatoms in an on-surface Ullmann-type reaction. Judd, C. J., Junqueira, F. L. Q., Haddow, S. L., Champness, N. R., Duncan, D. A., Jones, R. G., & Saywell, A. (2020). Communications Chemistry 2020 3:1, 3(1), 1–8. https://doi.org/10.1038/s42004-020-00402-0
Suppression of Dynamically Induced Stochastic Magnetic Behavior Through Materials Engineering. Broomhall, T. J., Rushforth, A. W., Rosamond, M. C., Linfield, E. H., & Hayward, T. J. (2020). Physical Review Applied, 13(2), 024039–024039. https://doi.org/10.1103/PHYSREVAPPLIED.13.024039
Triplet Excitation and Electroluminescence from a Supramolecular Monolayer Embedded in a Boron Nitride Tunnel Barrier. Svatek, S. A., Kerfoot, J., Summerfield, A., Nizovtsev, A. S., Korolkov, V. V., Taniguchi, T., Watanabe, K., Antolín, E., Besley, E., & Beton, P. H. (2020). Nano Letters, 20(1), 278–283. https://doi.org/10.1021/ACS.NANOLETT.9B03787
Tuning Interfacial Spins in Antiferromagnetic-Ferromagnetic-Heavy-Metal Heterostructures via Spin-Orbit Torque. Liu, X. H., Edmonds, K. W., Zhou, Z. P., & Wang, K. Y. (2020). Physical Review Applied, 13(1), 014059–014059. https://doi.org/10.1103/PHYSREVAPPLIED.13.014059
Ultra-fast charge transfer between fullerenes and a gold surface, as prepared by electrospray deposition. Temperton, R. H., Skowron, S. T., Gibson, A., Handrup, K., & O’Shea, J. N. (2020). Chemical Physics Letters, 747, 137309–137309. https://doi.org/10.1016/J.CPLETT.2020.137309
Using polycyclic aromatic hydrocarbons for graphene growth on Cu(111) under ultra-high vacuum. Klein, B. P., Stoodley, M. A., Edmondson, M., Rochford, L. A., Walker, M., Sattler, L., Weber, S. M., Hilt, G., Williams, L. B. S., Lee, T. L., Saywell, A., Maurer, R. J., & Duncan, D. A. (2022). Applied Physics Letters, 121(19), 191603–191603. https://doi.org/10.1063/5.0122914/2834463
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AIRBED: A Simplified Density Functional Theory Model for Physisorption on Surfaces. Mason, S. E., Beton, P. H., & Besley, N. A. (2019). Journal of Chemical Theory and Computation, 15(10), 5628–5634. https://doi.org/10.1021/ACS.JCTC.9B00576
Current-induced fragmentation of antiferromagnetic domains. Wörnle, M. S., Welter, P., Kašpar, Z., Olejník, K., Novák, V., Campion, R. P., Wadley, P., Jungwirth, T., Degen, C. L., & Gambardella, P. (2019). https://arxiv.org/abs/1912.05287v1
Design and optical characterisation of an efficient light trapping structure for dye-sensitized solar cell integrated windows. Knott, A., Liu, X., Makarovskiy, O., O’Shea, J., Tuck, C., & Wu, Y. (2019). Building Simulation, 12(1), 41–49. https://doi.org/10.1007/S12273-018-0485-1
Direct band-gap crossover in epitaxial monolayer boron nitride. Elias, C., Valvin, P., Pelini, T., Summerfield, A., Mellor, C. J., Cheng, T. S., Eaves, L., Foxon, C. T., Beton, P. H., Novikov, S. V., Gil, B., & Cassabois, G. (2019). Nature Communications 2019 10:1, 10(1), 1–7. https://doi.org/10.1038/s41467-019-10610-5
Direct Synthesis of Multiplexed Metal-Nanowire-Based Devices by Using Carbon Nanotubes as Vector Templates. Clément, P., Xu, X., Stoppiello, C. T., Rance, G. A., Attanzio, A., O’Shea, J. N., Temperton, R. H., Khlobystov, A. N., Lovelock, K. R. J., Seymour, J. M., Fogarty, R. M., Baker, A., Bourne, R. A., Hall, B., Chamberlain, T. W., & Palma, M. (2019). Angewandte Chemie International Edition, 58(29), 9928–9932. https://doi.org/10.1002/ANIE.201902857
Epitaxial multilayers of alkanes on two-dimensional black phosphorus as passivating and electrically insulating nanostructures. Bolognesi, M., Brucale, M., Lorenzoni, A., Prescimone, F., Moschetto, S., Korolkov, V. V., Baldoni, M., Serrano-Ruiz, M., Caporali, M., Mercuri, F., Besley, E., Muccini, M., Peruzzini, M., Beton, P. H., & Toffanin, S. (2019). Nanoscale, 11(37), 17252–17261. https://doi.org/10.1039/C9NR01155B
Gating effects in antiferromagnetic CuMnAs. Grzybowski, M. J., Wadley, P., Edmonds, K. W., Campion, R. P., Dybko, K., Majewicz, M., Gallagher, B. L., Sawicki, M., & Dietl, T. (2019). AIP Advances, 9(11). https://doi.org/10.1063/1.5124354/1056361
Hybrid light emitting diodes based on stable, high brightness all-inorganic CsPbI3 perovskite nanocrystals and InGaN. Zhang, C., Turyanska, L., Cao, H., Zhao, L., Fay, M. W., Temperton, R., O’Shea, J., Thomas, N. R., Wang, K., Luan, W., & Patanè, A. (2019). Nanoscale, 11(28), 13450–13457. https://doi.org/10.1039/C9NR03707A
In situ XPS analysis of the atomic layer deposition of aluminium oxide on titanium dioxide. Temperton, R. H., Gibson, A., & O’Shea, J. N. (2019). Physical Chemistry Chemical Physics, 21(3), 1393–1398. https://doi.org/10.1039/C8CP06912C
Manipulation of Magnetization by Spin–Orbit Torque. Li, Y., Edmonds, K. W., Liu, X., Zheng, H., & Wang, K. (2019). Advanced Quantum Technologies, 2(1–2), 1800052–1800052. https://doi.org/10.1002/QUTE.201800052
Multilevel information storage using magnetoelastic layer stacks. Pattnaik, D. P., Beardsley, R. P., Love, C., Cavill, S. A., Edmonds, K. W., & Rushforth, A. W. (2019). Scientific Reports 2019 9:1, 9(1), 1–6. https://doi.org/10.1038/s41598-019-39775-1
On-Surface Synthesis within a Porphyrin Nanoring Template. Judd, C. J., Kondratuk, D. V., Anderson, H. L., & Saywell, A. (2019). Scientific Reports 2019 9:1, 9(1), 1–8. https://doi.org/10.1038/s41598-019-45359-w
Optical Excitation of Propagating Magnetostatic Waves in an Epitaxial Galfenol Film by Ultrafast Magnetic Anisotropy Change. Khokhlov, N. E., Gerevenkov, P. I., Shelukhin, L. A., Azovtsev, A. V., Pertsev, N. A., Wang, M., Rushforth, A. W., Scherbakov, A. V., & Kalashnikova, A. M. (2019). Physical Review Applied, 12(4), 044044–044044. https://doi.org/10.1103/PHYSREVAPPLIED.12.044044
Optical Excitation of Single- and Multimode Magnetization Precession in Fe—Ga Nanolayers. Scherbakov, A. V., Danilov, A. P., Godejohann, F., Linnik, T. L., Glavin, B. A., Shelukhin, L. A., Pattnaik, D. P., Wang, M., Rushforth, A. W., Yakovlev, D. R., Akimov, A. V., & Bayer, M. (2019). Physical Review Applied, 11(3), 031003–031003. https://doi.org/10.1103/PHYSREVAPPLIED.11.031003
Ordering, flexibility and frustration in arrays of porphyrin nanorings. Summerfield, A., Baldoni, M., Kondratuk, D. V., Anderson, H. L., Whitelam, S., Garrahan, J. P., Besley, E., & Beton, P. H. (2019). Nature Communications 2019 10:1, 10(1), 1–7. https://doi.org/10.1038/s41467-019-11009-y
Resonant inelastic X-ray scattering of a Ru photosensitizer: Insights from individual ligands to the electronic structure of the complete molecule. Temperton, R. H., Skowron, S. T., Handrup, K., Gibson, A. J., Nicolaou, A., Jaouen, N., Besley, E., & O’Shea, J. N. (2019). Journal of Chemical Physics, 151(7), 74701–74701. https://doi.org/10.1063/1.5114692/197975
Rushing or dragging? An analysis of the ‘universality’ of correlated fluctuations in hi-hat timing and dynamics. Gordon, O., Coy, D., Matthews, J., Kandola-McNicholas, E., Llewellyn, O., Bokhari, A., & Moriarty, P. (2019).
Scanning tunneling state recognition with multi-class neural network ensembles. Gordon, O., D’Hondt, P., Knijff, L., Freeney, S. E., Junqueira, F., Moriarty, P., & Swart, I. (2019). Review of Scientific Instruments, 90(10), 103704–103704. https://doi.org/10.1063/1.5099590/360585
Spin Logic Devices via Electric Field Controlled Magnetization Reversal by Spin-Orbit Torque. Yang, M., Luo, J., Ji, Y., Zheng, H.-Z., Wang, K., Deng, Y., Wu, Z., Cai, K., Edmonds, K. W., Li, Y., Sheng, Y., Wang, S., & Cui, Y. (2019). IEEE Electron Device Letters, 40(9), 1554–1557. https://doi.org/10.1109/LED.2019.2932479
Spintronic Synapses: Tuning a Binary Ferromagnet into a Multistate Synapse with Spin–Orbit-Torque-Induced Plasticity. Cao, Y., Rushforth, Andrew W., Sheng, Y., Zheng, H., & Wang, K. (2019a). Advanced Functional Materials, 29(25), 1970175–1970175. https://doi.org/10.1002/ADFM.201970175
Stability and lifetime of antiferromagnetic skyrmions. Bessarab, P. F., Yudin, D., Gulevich, D. R., Wadley, P., Titov, M., & Tretiakov, O. A. (2019). Physical Review B, 99(14), 140411–140411. https://doi.org/10.1103/PHYSREVB.99.140411
Thermal stability of interstitial and substitutional Mn in ferromagnetic (Ga,Mn)As. Lima, T. A. L., Wahl, U., Costa, A., Augustyns, V., Edmonds, K. W., Gallagher, B. L., Campion, R. P., Araújo, J. P., Correia, J. G., Da Silva, M. R., Temst, K., Vantomme, A., & Pereira, L. M. C. (2019). Physical Review B, 100(14), 144409–144409. https://doi.org/10.1103/PHYSREVB.100.144409
Tuning a Binary Ferromagnet into a Multistate Synapse with Spin–Orbit-Torque-Induced Plasticity. Cao, Y., Rushforth, A. W., Sheng, Y., Zheng, H., & Wang, K. (2019b). Advanced Functional Materials, 29(25), 1808104–1808104. https://doi.org/10.1002/ADFM.201808104
Two-Dimensional Diffusion of Excitons in a Perylene Diimide Monolayer Quenched by a Fullerene Heterojunction. Kerfoot, J., Korolkov, V. V., Svatek, S. A., Alkhamisi, M., Taniguchi, T., Watanabe, K., Parkinson, P. W., & Beton, P. H. (2019). Journal of Physical Chemistry C, 123(19), 12249–12254. https://doi.org/10.1021/ACS.JPCC.9B01413
Ultra-high resolution imaging of thin films and single strands of polythiophene using atomic force microscopy. Korolkov, V. V., Summerfield, A., Murphy, A., Amabilino, D. B., Watanabe, K., Taniguchi, T., & Beton, P. H. (2019). Nature Communications 2019 10:1, 10(1), 1–8. https://doi.org/10.1038/s41467-019-09571-6
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Adjustable Current-Induced Magnetization Switching Utilizing Interlayer Exchange Coupling. Sheng, Y., Edmonds, K. W., Ma, X., Zheng, H., & Wang, K. (2018). Advanced Electronic Materials, 4(9), 1800224–1800224. https://doi.org/10.1002/AELM.201800224
Adsorption of Hexacontane on Hexagonal Boron Nitride. Albar, J. D., Korolkov, V. V., Baldoni, M., Watanabe, K., Taniguchi, T., Besley, E., & Beton, P. H. (2018). Journal of Physical Chemistry C, 122(48), 27575–27581. https://doi.org/10.1021/ACS.JPCC.8B10167
An On-Surface Reaction Confined within a Porous Molecular Template. Judd, C. J., Champness, N. R., & Saywell, A. (2018). Chemistry – A European Journal, 24(1), 56–61. https://doi.org/10.1002/CHEM.201704693
Band structure of CuMnAs probed by optical and photoemission spectroscopy. Veis, M., Minár, J., Steciuk, G., Palatinus, L., Rinaldi, C., Cantoni, M., Kriegner, D., Tikuišis, K. K., Hamrle, J., Zahradník, M., Antoš, R., Železný, J., Šmejkal, L., Marti, X., Wadley, P., Campion, R. P., Frontera, C., Uhlířová, K., Duchoň, T., … Výborný, K. (2018). Physical Review B, 97(12), 125109–125109. https://doi.org/10.1103/PHYSREVB.97.125109
Beauty and the biased. Moriarty, P. (2018a). Physics World, 31(12), 17–17. https://doi.org/10.1088/2058-7058/31/12/22
Coherent acoustic phonons in van der Waals nanolayers and heterostructures. Greener, J. D. G., Akimov, A. V., Gusev, V. E., Kudrynskyi, Z. R., Beton, P. H., Kovalyuk, Z. D., Taniguchi, T., Watanabe, K., Kent, A. J., & Patanè, A. (2018). Physical Review B, 98(7). https://doi.org/10.1103/PHYSREVB.98.075408
Current polarity-dependent manipulation of antiferromagnetic domains. Wadley, P., Reimers, S., Grzybowski, M. J., Andrews, C., Wang, M., Chauhan, J. S., Gallagher, B. L., Campion, R. P., Edmonds, K. W., Dhesi, S. S., Maccherozzi, F., Novak, V., Wunderlich, J., & Jungwirth, T. (2018). Nature Nanotechnology 2018 13:5, 13(5), 362–365. https://doi.org/10.1038/s41565-018-0079-1
Electrically induced and detected Néel vector reversal in a collinear antiferromagnet. Godinho, J., Reichlová, H., Kriegner, D., Novák, V., Olejník, K., Kašpar, Z., Šobáň, Z., Wadley, P., Campion, R. P., Otxoa, R. M., Roy, P. E., Železný, J., Jungwirth, T., & Wunderlich, J. (2018). Nature Communications 2018 9:1, 9(1), 1–8. https://doi.org/10.1038/s41467-018-07092-2
Epitaxial growth of γ-InSe and α, β, and γ-In2Se3 on ε-GaSe. Balakrishnan, N., Steer, E. D., Smith, E. F., Kudrynskyi, Z. R., Kovalyuk, Z. D., Eaves, L., Patanè, A., & Beton, P. H. (2018). 2D Materials, 5(3), 035026–035026. https://doi.org/10.1088/2053-1583/AAC479
Formation routes and structural details of the CaF1 layer on Si(111) from high-resolution noncontact atomic force microscopy data. Rahe, P., Smith, E. F., Wollschläger, J., & Moriarty, P. J. (2018). Physical Review B, 97(12). https://doi.org/10.1103/PHYSREVB.97.125418
Generation of a localized microwave magnetic field by coherent phonons in a ferromagnetic nanograting. Salasyuk, A. S., Rudkovskaya, A. V., Danilov, A. P., Glavin, B. A., Kukhtaruk, S. M., Wang, M., Rushforth, A. W., Nekludova, P. A., Sokolov, S. V., Elistratov, A. A., Yakovlev, D. R., Bayer, M., Akimov, A. V., & Scherbakov, A. V. (2018). Physical Review B, 97(6), 060404–060404. https://doi.org/10.1103/PHYSREVB.97.060404
High-temperature molecular beam epitaxy of hexagonal boron nitride layers. Cheng, T. S., Summerfield, A., Mellor, C. J., Davies, A., Khlobystov, A. N., Eaves, L., Foxon, C. T., Beton, P. H., & Novikov, S. V. (2018). Journal of Vacuum Science & Technology B, Nanotechnology and Microelectronics: Materials, Processing, Measurement, and Phenomena, 36(2), 2–103. https://doi.org/10.1116/1.5011280/592946
High-Temperature Molecular Beam Epitaxy of Hexagonal Boron Nitride with High Active Nitrogen Fluxes. Cheng, T. S., Summerfield, A., Mellor, C. J., Khlobystov, A. N., Eaves, L., Foxon, C. T., Beton, P. H., & Novikov, S. V. (2018). Materials 2018, Vol. 11, Page 1119, 11(7), 1119–1119. https://doi.org/10.3390/MA11071119
Lattice-Matched Epitaxial Graphene Grown on Boron Nitride. Davies, A., Albar, J. D., Summerfield, A., Thomas, J. C., Cheng, T. S., Korolkov, V. V., Stapleton, E., Wrigley, J., Goodey, N. L., Mellor, C. J., Khlobystov, A. N., Watanabe, K., Taniguchi, T., Foxon, C. T., Eaves, L., Novikov, S. V., & Beton, P. H. (2018). Nano Letters, 18(1), 498–504. https://doi.org/10.1021/ACS.NANOLETT.7B04453
Moiré-Modulated Conductance of Hexagonal Boron Nitride Tunnel Barriers. Summerfield, A., Kozikov, A., Cheng, T. S., Davies, A., Cho, Y. J., Khlobystov, A. N., Mellor, C. J., Foxon, C. T., Watanabe, K., Taniguchi, T., Eaves, L., Novoselov, K. S., Novikov, S. V., & Beton, P. H. (2018). Nano Letters, 18(7), 4241–4246. https://doi.org/10.1021/ACS.NANOLETT.8B01223
Optically excited spin pumping mediating collective magnetization dynamics in a spin valve structure. Danilov, A. P., Scherbakov, A. V., Glavin, B. A., Linnik, T. L., Kalashnikova, A. M., Shelukhin, L. A., Pattnaik, D. P., Rushforth, A. W., Love, C. J., Cavill, S. A., Yakovlev, D. R., & Bayer, M. (2018). Physical Review B, 98(6), 060406–060406. https://doi.org/10.1103/PHYSREVB.98.060406
Out of this solar system. Moriarty, P. (2018b). Physics World, 31(2), 22–22. https://doi.org/10.1088/2058-7058/31/2/25
Pure spin currents find the off switch. Wadley, P. (2018). Nature Materials 2018 17:7, 17(7), 566–567. https://doi.org/10.1038/s41563-018-0125-2
Scanning photocurrent microscopy of 3D printed light trapping structures in dye-sensitized solar cells. Knott, A., Makarovskiy, O., O’Shea, J., Wu, Y., & Tuck, C. (2018). Solar Energy Materials and Solar Cells, 180, 103–109. https://doi.org/10.1016/J.SOLMAT.2018.02.028
Selection of Adlayer Patterns of 1,3-Dithia Derivatives of Ferrocene by the Nature of the Solvent. Saha, P., Gurunarayanan, V., Korolkov, V. V., Vasudev, P. G., Ramapanicker, R., Beton, P. H., & Gopakumar, T. G. (2018). Journal of Physical Chemistry C, 122(33), 19067–19074. https://doi.org/10.1021/ACS.JPCC.8B06036
Spin switching in antiferromagnets using Néel-order spin-orbit torques*. Wadley, P., & Edmonds, K. W. (2018). Chinese Physics B, 27(10), 107201–107201. https://doi.org/10.1088/1674-1056/27/10/107201
Spin transport and spin torque in antiferromagnetic devices. Železný, J., Wadley, P., Olejník, K., Hoffmann, A., & Ohno, H. (2018). Nature Physics 2018 14:3, 14(3), 220–228. https://doi.org/10.1038/s41567-018-0062-7
Substrate-induced shifts and screening in the fluorescence spectra of supramolecular adsorbed organic monolayers. Kerfoot, J., Korolkov, V. V., Nizovtsev, A. S., Jones, R., Taniguchi, T., Watanabe, K., Lesanovsky, I., Olmos, B., Besley, N. A., Besley, E., & Beton, P. H. (2018). Journal of Chemical Physics, 149(5), 54701–54701. https://doi.org/10.1063/1.5041418/362448
Supramolecular assemblies on surfaces: Nanopatterning, functionality, and reactivity. Goronzy, D. P., Ebrahimi, M., Rosei, F., Arramel, Fang, Y., De Feyter, S., Tait, S. L., Wang, C., Beton, P. H., Wee, A. T. S., Weiss, P. S., & Perepichka, D. F. (2018). ACS Nano, 12(8), 7445–7481. https://doi.org/10.1021/ACSNANO.8B03513
Switching the uniaxial magnetic anisotropy by ion irradiation induced compensation. Yuan, Y., Amarouche, T., Xu, C., Rushforth, A., Böttger, R., Edmonds, K., Campion, R., Gallagher, B., Helm, M., Von Bardeleben, H. J., & Zhou, S. (2018). Journal of Physics D: Applied Physics, 51(14), 145001–145001. https://doi.org/10.1088/1361-6463/AAB1DB
Terahertz electrical writing speed in an antiferromagnetic memory. Olejník, K., Seifert, T., Kašpar, Z., Novák, V., Wadley, P., Campion, R. P., Baumgartner, M., Gambardella, P., Nemec, P., Wunderlich, J., Sinova, J., Kužel, P., Müller, M., Kampfrath, T., & Jungwirth, T. (2018). Science Advances, 4(3). https://doi.org/10.1126/SCIADV.AAR3566
The growth and fluorescence of phthalocyanine monolayers, thin films and multilayers on hexagonal boron nitride. Alkhamisi, M., Korolkov, V. V., Nizovtsev, A. S., Kerfoot, J., Taniguchi, T., Watanabe, K., Besley, N. A., Besley, E., & Beton, P. H. (2018). Chemical Communications, 54(85), 12021–12024. https://doi.org/10.1039/C8CC06304D
The wow and the woo. Moriarty, P. (2018c). Physics World, 31(6), 38–39. https://doi.org/10.1088/2058-7058/31/6/33
Ultra-fast intramolecular vibronic coupling revealed by RIXS and RPES maps of an aromatic adsorbate on TiO2(110). O’Shea, J. N., Handrup, K., Temperton, R. H., Gibson, A. J., Nicolaou, A., Jaouen, N., Taylor, J. B., Mayor, L. C., Swarbrick, J. C., & Schnadt, J. (2018). Journal of Chemical Physics, 148(20), 204705–204705. https://doi.org/10.1063/1.5024862/197024
Van der Waals epitaxy of two-dimensional single-layer h-BN on graphite by molecular beam epitaxy: Electronic properties and band structure. Pierucci, D., Zribi, J., Henck, H., Chaste, J., Silly, M. G., Bertran, F., Le Fevre, P., Gil, B., Summerfield, A., Beton, P. H., Novikov, S. V., Cassabois, G., Rault, J. E., & Ouerghi, A. (2018). Applied Physics Letters, 112(25), 253102–253102. https://doi.org/10.1063/1.5029220/35726
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Adsorption and charge transfer interactions of bi-isonicotinic acid on Ag(111). Temperton, R. H., Gibson, A. J., Handrup, K., & O’Shea, J. N. (2017). Journal of Chemical Physics, 147(5), 54703–54703. https://doi.org/10.1063/1.4996746/904591
An atomic carbon source for high temperature molecular beam epitaxy of graphene. Albar, J. D., Summerfield, A., Cheng, T. S., Davies, A., Smith, E. F., Khlobystov, A. N., Mellor, C. J., Taniguchi, T., Watanabe, K., Foxon, C. T., Eaves, L., Beton, P. H., & Novikov, S. V. (2017). Scientific Reports 2017 7:1, 7(1), 1–8. https://doi.org/10.1038/s41598-017-07021-1
Antiferromagnetic CuMnAs multi-level memory cell with microelectronic compatibility. Olejník, K., Schuler, V., Marti, X., Novák, V., Kašpar, Z., Wadley, P., Campion, R. P., Edmonds, K. W., Gallagher, B. L., Garces, J., Baumgartner, M., Gambardella, P., & Jungwirth, T. (2017). Nature Communications 2017 8:1, 8(1), 1–7. https://doi.org/10.1038/ncomms15434
Automated extraction of single H atoms with STM: tip state dependency. Gordon, O. M., Junqueira, F. L. Q., Moriarty, P. J., Shirley, Y. L., Ellsworth-Bowers, T. P., Svoboda, B., Møller, M., Jarvis, S. P., Guérinet, L., Sharp, P., Woolley, R., Rahe, P., & Moriarty, P. (2017). Nanotechnology, 28(7), 075302–075302. https://doi.org/10.1088/1361-6528/28/7/075302
Boundary effects in a quasi-two-dimensional driven granular fluid. Smith, N. D., & Smith, M. I. (2017). Physical Review E, 96(6). https://doi.org/10.1103/PHYSREVE.96.062910
Control of antiferromagnetic spin axis orientation in bilayer Fe/CuMnAs films. Wadley, P., Edmonds, K. W., Shahedkhah, M. R., Campion, R. P., Gallagher, B. L., Železný, J., Kuneš, J., Novák, V., Jungwirth, T., Saidl, V., Němec, P., Maccherozzi, F., & Dhesi, S. S. (2017). Scientific Reports 2017 7:1, 7(1), 1–6. https://doi.org/10.1038/s41598-017-11653-8
Deep ultraviolet emission in hexagonal boron nitride grown by high-temperature molecular beam epitaxy. Vuong, T. Q. P., Cassabois, G., Valvin, P., Rousseau, E., Summerfield, A., Mellor, C. J., Cho, Y., Cheng, T. S., Albar, J. D., Eaves, L., Foxon, C. T., Beton, P. H., Novikov, S. V., & Gil, B. (2017). 2D Materials, 4(2), 021023–021023. https://doi.org/10.1088/2053-1583/AA604A
Deterministic control of magnetic vortex wall chirality by electric field. Beardsley, R. P., Bowe, S., Parkes, D. E., Reardon, C., Edmonds, K. W., Gallagher, B. L., Cavill, S. A., & Rushforth, A. W. (2017). Scientific Reports 2017 7:1, 7(1), 1–6. https://doi.org/10.1038/s41598-017-07944-9
Effect of lithographically-induced strain relaxation on the magnetic domain configuration in microfabricated epitaxially grown Fe81Ga19. Beardsley, R. P., Parkes, D. E., Zemen, J., Bowe, S., Edmonds, K. W., Reardon, C., Maccherozzi, F., Isakov, I., Warburton, P. A., Campion, R. P., Gallagher, B. L., Cavill, S. A., & Rushforth, A. W. (2017). Scientific Reports 2017 7:1, 7(1), 1–6. https://doi.org/10.1038/srep42107
Electric field control of deterministic current-induced magnetization switching in a hybrid ferromagnetic/ferroelectric structure. Cai, K., Yang, M., Ju, H., Wang, S., Ji, Y., Li, B., Edmonds, K. W., Sheng, Y., Zhang, B., Zhang, N., Liu, S., Zheng, H., & Wang, K. (2017). Nature Materials 2017 16:7, 16(7), 712–716. https://doi.org/10.1038/nmat4886
Engineering p–n junctions and bandgap tuning of InSe nanolayers by controlled oxidation. Balakrishnan, N., Kudrynskyi, Z. R., Smith, E. F., Fay, M. W., Makarovsky, O., Kovalyuk, Z. D., Eaves, L., Beton, P. H., & Patanè, A. (2017). 2D Materials, 4(2), 025043–025043. https://doi.org/10.1088/2053-1583/AA61E0
Exploring ultra-fast charge transfer and vibronic coupling with N 1s RIXS maps of an aromatic molecule coupled to a semiconductor. O’Shea, J. N., Handrup, K., Temperton, R. H., Gibson, A. J., Nicolaou, A., & Jaouen, N. (2017). Journal of Chemical Physics, 147(13), 134705–134705. https://doi.org/10.1063/1.4999135/195635
Faradaic processes beyond Nernst’s law: Density functional theory assisted modelling of partial electron delocalisation and pseudocapacitance in graphene oxides. Li, J., O’Shea, J., Hou, X., & Chen, G. Z. (2017). Chemical Communications, 53(75), 10414–10417. https://doi.org/10.1039/C7CC04344A
Giant Quantum Hall Plateau in Graphene Coupled to an InSe van der Waals Crystal. Kudrynskyi, Z. R., Bhuiyan, M. A., Makarovsky, O., Greener, J. D. G., Vdovin, E. E., Kovalyuk, Z. D., Cao, Y., Mishchenko, A., Novoselov, K. S., Beton, P. H., Eaves, L., & Patanè, A. (2017). Physical Review Letters, 119(15). https://doi.org/10.1103/PHYSREVLETT.119.157701
Imaging Current-Induced Switching of Antiferromagnetic Domains in CuMnAs. Grzybowski, M. J., Wadley, P., Edmonds, K. W., Beardsley, R., Hills, V., Campion, R. P., Gallagher, B. L., Chauhan, J. S., Novak, V., Jungwirth, T., Maccherozzi, F., & Dhesi, S. S. (2017). Physical Review Letters, 118(5), 057701–057701. https://doi.org/10.1103/PHYSREVLETT.118.057701
Investigation of exchange coupled bilayer Fe/CuMnAs by pump–probe experiment. Saidl, V., Němec, P., Wadley, P., Edmonds, K. W., Campion, R. P., Novák, V., Gallagher, B. L., Trojánek, F., & Jungwirth, T. (2017). Physica Status Solidi (RRL) – Rapid Research Letters, 11(4), 1600441–1600441. https://doi.org/10.1002/PSSR.201600441
Mechano-chemical manipulation of Sn chains on Si(1 0 0) by NC-AFM. Sweetman, A., Lekkas, I., & Moriarty, P. (2016). Journal of Physics: Condensed Matter, 29(7), 074003–074003. https://doi.org/10.1088/1361-648X/29/7/074003
On the suitability of high vacuum electrospray deposition for the fabrication of molecular electronic devices. Temperton, R. H., O’Shea, J. N., & Scurr, D. J. (2017). Chemical Physics Letters, 682, 15–19. https://doi.org/10.1016/J.CPLETT.2017.05.068
Optical determination of the Néel vector in a CuMnAs thin-film antiferromagnet. Saidl, V., Němec, P., Wadley, P., Hills, V., Campion, R. P., Novák, V., Edmonds, K. W., Maccherozzi, F., Dhesi, S. S., Gallagher, B. L., Trojánek, F., Kuneš, J., Železný, J., Malý, P., & Jungwirth, T. (2017). Nature Photonics 2016 11:2, 11(2), 91–96. https://doi.org/10.1038/nphoton.2016.255
Probing properties of molecule-based interface systems: General discussion and Discussion of the Concluding Remarks. Amabilino, D., Bâldea, I., Batteas, J., Beton, P., Bilbao, N., Costantini, G., Davidson, J., De Feyter, S., Diaz Fernandez, Y., Ernst, K. H., Hirsch, B., Jabbarzadeh, A., Jones, R., Kühnle, A., Lackinger, M., Li, Z., Lin, N., Linderoth, T. R., Martsinovich, N., … Tait, S. L. (2017). Faraday Discussions, 204(0), 503–530. https://doi.org/10.1039/C7FD90077E
Resonant core spectroscopies of the charge transfer interactions between C60 and the surfaces of Au(111), Ag(111), Cu(111) and Pt(111). Gibson, A. J., Temperton, R. H., Handrup, K., & O’Shea, J. N. (2017). Surface Science, 657, 69–78. https://doi.org/10.1016/J.SUSC.2016.11.009
Supramolecular networks stabilise and functionalise black phosphorus. Korolkov, V. V., Timokhin, I. G., Haubrichs, R., Smith, E. F., Yang, L., Yang, S., Champness, N. R., Schröder, M., & Beton, P. H. (2017). Nature Communications 2017 8:1, 8(1), 1–8. https://doi.org/10.1038/s41467-017-01797-6
The effect of dynamical compressive and shear strain on magnetic anisotropy in a low symmetry ferromagnetic film. Linnik, T. L., Kats, V. N., Jager, J., Salasyuk, A. S., Yakovlev, D. R., Rushforth, A. W., Akimov, A. V., Kalashnikova, A. M., Bayer, M., & Scherbakov, A. V. (2017). Physica Scripta, 92(5), 054006–054006. https://doi.org/10.1088/1402-4896/AA6943
Ullmann Coupling Reactions on Ag(111) and Ag(110); Substrate Influence on the Formation of Covalently Coupled Products and Intermediate Metal-Organic Structures. Judd, C. J., Haddow, S. L., Champness, N. R., & Saywell, A. (2017). Scientific Reports 2017 7:1, 7(1), 1–7. https://doi.org/10.1038/s41598-017-13315-1
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A Combined Monte Carlo and Hückel Theory Simulation of Orientational Ordering in C60 Assemblies. Leaf, J., Stannard, A., Jarvis, S. P., Moriarty, P., & Dunn, J. L. (2016). Journal of Physical Chemistry C, 120(15), 8139–8147. https://doi.org/10.1021/ACS.JPCC.6B00638
Antiferromagnetic multi-level memory cell. Schuler, V., Olejnik, K., Marti, X., Novak, V., Wadley, P., Campion, R. P., Edmonds, K. W., Gallagher, B. L., Garces, J., Baumgartner, M., Gambardella, P., & Jungwirth, T. (2016). https://arxiv.org/abs/1608.03238v1
Antiferromagnetic spintronics. Jungwirth, T., Marti, X., Wadley, P., & Wunderlich, J. (2016). Nature Nanotechnology 2016 11:3, 11(3), 231–241. https://doi.org/10.1038/nnano.2016.18
Contributions from coherent and incoherent lattice excitations to ultrafast optical control of magnetic anisotropy of metallic films. Kats, V. N., Linnik, T. L., Salasyuk, A. S., Rushforth, A. W., Wang, M., Wadely, P., Akimov, A. V., Cavill, S. A., Holý, V., Kalashnikova, A. M., & Scherbakov, A. V. (2016). Https://Doi.Org/10.1117/12.2238020, 9835, 200–204. https://doi.org/10.1117/12.2238020
DMD-based software-configurable spatially-offset Raman spectroscopy for spectral depth-profiling of optically turbid samples. Gibson, G., Liao, Z., Padgett, M., Sinjab, F., & Notingher, I. (2016). Optics Express, Vol. 24, Issue 12, Pp. 12701-12712, 24(12), 12701–12712. https://doi.org/10.1364/OE.24.012701
Enhancement of CO2 Adsorption and Catalytic Properties by Fe-Doping of [Ga2(OH)2(L)] (H4L = Biphenyl-3,3′,5,5′-tetracarboxylic Acid), MFM-300(Ga2). Krap, C. P., Newby, R., Dhakshinamoorthy, A., García, H., Cebula, I., Easun, T. L., Savage, M., Eyley, J. E., Gao, S., Blake, A. J., Lewis, W., Beton, P. H., Warren, M. R., Allan, D. R., Frogley, M. D., Tang, C. C., Cinque, G., Yang, S., & Schröder, M. (2016). Inorganic Chemistry, 55(3), 1076–1088. https://doi.org/10.1021/ACS.INORGCHEM.5B02108
Hexagonal Boron Nitride Tunnel Barriers Grown on Graphite by High Temperature Molecular Beam Epitaxy. Cho, Y. J., Summerfield, A., Davies, A., Cheng, T. S., Smith, E. F., Mellor, C. J., Khlobystov, A. N., Foxon, C. T., Eaves, L., Beton, P. H., & Novikov, S. V. (2016). Scientific Reports 2016 6:1, 6(1), 1–7. https://doi.org/10.1038/srep34474
High temperature MBE of graphene on sapphire and hexagonal boron nitride flakes on sapphire. Cheng, T. S., Davies, A., Summerfield, A., Cho, Y., Cebula, I., Hill, R. J. A., Mellor, C. J., Khlobystov, A. N., Taniguchi, T., Watanabe, K., Beton, P. H., Foxon, C. T., Eaves, L., & Novikov, S. V. (2016). Journal of Vacuum Science & Technology B, Nanotechnology and Microelectronics: Materials, Processing, Measurement, and Phenomena, 34(2), 51–51. https://doi.org/10.1116/1.4938157/592974
Light-Induced Translation of Motorized Molecules on a Surface. Saywell, A., Bakker, A., Mielke, J., Kumagai, T., Wolf, M., García-López, V., Chiang, P. T., Tour, J. M., & Grill, L. (2016). ACS Nano, 10(12), 10945–10952. https://doi.org/10.1021/ACSNANO.6B05650
Naphthalocyanine Thin Films and Field Effect Transistors. Esmail, A. M. S., Staddon, C. R., & Beton, P. H. (2016). Journal of Physical Chemistry C, 120(28), 15338–15341. https://doi.org/10.1021/ACS.JPCC.6B06134
Optovibrometry: Tracking changes in the surface tension and viscosity of multicomponent droplets in real-time. Harrold, V. C., & Sharp, J. S. (2016). Soft Matter, 12(42), 8790–8797. https://doi.org/10.1039/C6SM01901C
Organisation and ordering of 1D porphyrin polymers synthesised by on-surface Glaser coupling. Saywell, A., Browning, A. S., Rahe, P., Anderson, H. L., & Beton, P. H. (2016). Chemical Communications, 52(68), 10342–10345. https://doi.org/10.1039/C6CC03758E
Piezo Voltage Controlled Planar Hall Effect Devices. Zhang, B., Meng, K. K., Yang, M. Y., Edmonds, K. W., Zhang, H., Cai, K. M., Sheng, Y., Zhang, N., Ji, Y., Zhao, J. H., Zheng, H. Z., & Wang, K. Y. (2016). Scientific Reports 2016 6:1, 6(1), 1–6. https://doi.org/10.1038/srep28458
Precise tuning of the Curie temperature of (Ga,Mn)As-based magnetic semiconductors by hole compensation: Support for valence-band ferromagnetism. Zhou, S., Li, L., Yuan, Y., Rushforth, A. W., Chen, L., Wang, Y., Böttger, R., Heller, R., Zhao, J., Edmonds, K. W., Campion, R. P., Gallagher, B. L., Timm, C., & Helm, M. (2016). Physical Review B, 94(7), 075205–075205. https://doi.org/10.1103/PHYSREVB.94.075205
Quantum confinement and photoresponsivity of β-In2Se3 nanosheets grown by physical vapour transport. Balakrishnan, N., Staddon, C. R., Smith, E. F., Stec, J., Gay, D., Mudd, G. W., Makarovsky, O., Kudrynskyi, Z. R., Kovalyuk, Z. D., Eaves, L., Patanè, A., & Beton, P. H. (2016). 2D Materials, 3(2), 025030–025030. https://doi.org/10.1088/2053-1583/3/2/025030
Rheological Properties of Viscoelastic Drops on Superamphiphobic Substrates. Harrold, V. C., Paven, M., Vollmer, D., & Sharp, J. S. (2016). Langmuir, 32(16), 4071–4076. https://doi.org/10.1021/ACS.LANGMUIR.6B00779
Spin-orbit torque in Pt/CoNiCo/Pt symmetric devices. Yang, M., Cai, K., Ju, H., Edmonds, K. W., Yang, G., Liu, S., Li, B., Zhang, B., Sheng, Y., Wang, S., Ji, Y., & Wang, K. (2016). Scientific Reports 2016 6:1, 6(1), 1–7. https://doi.org/10.1038/srep20778
Spintronics: Electrical switching of an antiferromagnet. Wadley, P., Howells, B., Železný, J., Andrews, C., Hills, V., Campion, R. P., Novák, V., Olejník, K., Maccherozzi, F., Dhesi, S. S., Martin, S. Y., Wagner, T., Wunderlich, J., Freimuth, F., Mokrousov, Y., Kuneš, J., Chauhan, J. S., Grzybowski, M. J., Rushforth, A. W., … Jungwirth, T. (2016). Science, 351(6273), 587–590. https://doi.org/10.1126/SCIENCE.AAB1031
Strain-Engineered Graphene Grown on Hexagonal Boron Nitride by Molecular Beam Epitaxy. Summerfield, A., Davies, A., Cheng, T. S., Korolkov, V. V., Cho, Y., Mellor, C. J., Foxon, C. T., Khlobystov, A. N., Watanabe, K., Taniguchi, T., Eaves, L., Novikov, S. V., & Beton, P. H. (2016). Scientific Reports 2016 6:1, 6(1), 1–10. https://doi.org/10.1038/srep22440
The interplay of crack hopping, delamination and interface failure in drying nanoparticle films. Yang, B., Sharp, J. S., & Smith, M. I. (2016). Scientific Reports 2016 6:1, 6(1), 1–9. https://doi.org/10.1038/srep32296
Three-dimensional Heisenberg critical behavior in the highly disordered dilute ferromagnetic semiconductor (Ga,Mn)As. Wang, M., Marshall, R. A., Edmonds, K. W., Rushforth, A. W., Campion, R. P., & Gallagher, B. L. (2016). Physical Review B, 93(18), 184417–184417. https://doi.org/10.1103/PHYSREVB.93.184417
Tissue diagnosis using power-sharing multifocal Raman micro-spectroscopy and auto-fluorescence imaging. Gibson, G., Varma, S., Kong, K., Padgett, M., Williams, H., Sinjab, F., & Notingher, I. (2016). Biomedical Optics Express, Vol. 7, Issue 8, Pp. 2993-3006, 7(8), 2993–3006. https://doi.org/10.1364/BOE.7.002993
Toward printing molecular nanostructures from microstructured samples in ultrahigh vacuum. Nacci, C., Saywell, A., Troadec, C., Deng, J., Willinger, M. G., Joachim, C., & Grill, L. (2016). Journal of Vacuum Science & Technology B, Nanotechnology and Microelectronics: Materials, Processing, Measurement, and Phenomena, 34(1), 11801–11801. https://doi.org/10.1116/1.4936886/466588
Ultrafast changes of magnetic anisotropy driven by laser-generated coherent and noncoherent phonons in metallic films. Kats, V. N., Linnik, T. L., Salasyuk, A. S., Rushforth, A. W., Wang, M., Wadley, P., Akimov, A. V., Cavill, S. A., Holy, V., Kalashnikova, A. M., & Scherbakov, A. V. (2016). Physical Review B, 93(21), 214422–214422. https://doi.org/10.1103/PHYSREVB.93.214422
Visualizing the orientational dependence of an intermolecular potential. Sweetman, A., Rashid, M. A., Jarvis, S. P., Dunn, J. L., Rahe, P., & Moriarty, P. (2016). Nature Communications 2016 7:1, 7(1), 1–7. https://doi.org/10.1038/ncomms10621
Watch your step! A frustrated total internal reflection approach to forensic footwear imaging. Needham, J. A., & Sharp, J. S. (2016). Scientific Reports 2016 6:1, 6(1), 1–7. https://doi.org/10.1038/srep21290
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3D ToF-SIMS imaging of polymer multilayer films using argon cluster sputter depth profiling. Bailey, J., Havelund, R., Shard, A. G., Gilmore, I. S., Alexander, M. R., Sharp, J. S., & Scurr, D. J. (2015). ACS Applied Materials and Interfaces, 7(4), 2654–2659. https://doi.org/10.1021/AM507663V
Adsorbate-induced curvature and stiffening of graphene. Svatek, S. A., Scott, O. R., Rivett, J. P. H., Wright, K., Baldoni, M., Bichoutskaia, E., Taniguchi, T., Watanabe, K., Marsden, A. J., Wilson, N. R., & Beton, P. H. (2015). Nano Letters, 15(1), 159–164. https://doi.org/10.1021/NL503308C
Antiferromagnetic structure in tetragonal CuMnAs thin films. Wadley, P., Hills, V., Shahedkhah, M. R., Edmonds, K. W., Campion, R. P., Novák, V., Ouladdiaf, B., Khalyavin, D., Langridge, S., Saidl, V., Nemec, P., Rushforth, A. W., Gallagher, B. L., Dhesi, S. S., MacCherozzi, F., Železný, J., & Jungwirth, T. (2015). Scientific Reports 2015 5:1, 5(1), 1–6. https://doi.org/10.1038/srep17079
Electronic structure of (Ga,Mn)As as seen by synchrotron radiation. Edmonds, K., Van Der Laan, G., & Panaccione, G. (2015). Semiconductor Science and Technology, 30(4), 043001–043001. https://doi.org/10.1088/0268-1242/30/4/043001
Electrospray deposition in vacuum as method to create functionally active protein immobilization on polymeric substrates. Fornari, E., Roberts, C. J., Temperton, R. H., & O’Shea, J. N. (2015). Journal of Colloid and Interface Science, 453, 252–259. https://doi.org/10.1016/J.JCIS.2015.05.007
Emergent rhombus tilings from molecular interactions with m-fold rotational symmetry. Whitelam, S., Tamblyn, I., Garrahan, J. P., & Beton, P. H. (2015). Physical Review Letters, 114(11). https://doi.org/10.1103/PHYSREVLETT.114.115702
Fracture of Jammed Colloidal Suspensions. Smith, M. I. (2015). Scientific Reports 2015 5:1, 5(1), 1–7. https://doi.org/10.1038/srep14175
Graphene-InSe-graphene van der Waals heterostructures. Svatek, S. A., Mudd, G. W., Kudrynskyi, Z. R., Makarovsky, O., Kovalyuk, Z. D., Mellor, C. J., Eaves, L., Beton, P. H., & Patanè, A. (2015). Journal of Physics: Conference Series, 647(1), 012001–012001. https://doi.org/10.1088/1742-6596/647/1/012001
High Broad-Band Photoresponsivity of Mechanically Formed InSe–Graphene van der Waals Heterostructures. Mudd, G. W., Svatek, S. A., Hague, L., Makarovsky, O., Kudrynskyi, Z. R., Mellor, C. J., Beton, P. H., Eaves, L., Novoselov, K. S., Kovalyuk, Z. D., Vdovin, E. E., Marsden, A. J., Wilson, N. R., Patanè, A., Mudd, G. W., Svatek, S. A., Makarovsky, O., Kudrynskyi, Z. R., Mellor, C. J., … Wilson, N. R. (2015). Advanced Materials, 27(25), 3760–3766. https://doi.org/10.1002/ADMA.201500889
Identification of the interstitial Mn site in ferromagnetic (Ga,Mn)As. Lima, T. A. L., Wahl, U., Augustyns, V., Silva, D. J., Costa, A., Houben, K., Edmonds, K. W., Gallagher, B. L., Campion, R. P., Van Bael, M. J., Da Silva, M. R., Correia, J. G., Araújo, J. P., Temst, K., Vantomme, A., & Pereira, L. M. C. (2015). Applied Physics Letters, 106(1), 12406–12406. https://doi.org/10.1063/1.4905556/28015
Insights into Kelvin probe force microscopy data of insulator-supported molecules. Neff, J. L., & Rahe, P. (2015). Physical Review B – Condensed Matter and Materials Physics, 91(8). https://doi.org/10.1103/PHYSREVB.91.085424
Interfacial contribution to thickness dependent in-plane anisotropic magnetoresistance. Tokaç, M., Wang, M., Jaiswal, S., Rushforth, A. W., Gallagher, B. L., Atkinson, D., & Hindmarch, A. T. (2015). AIP Advances, 5(12), 127108–127108. https://doi.org/10.1063/1.4937556/661096
Intermolecular artifacts in probe microscope images of C60 assemblies. Jarvis, S. P., Rashid, M. A., Sweetman, A., Leaf, J., Taylor, S., Moriarty, P., & Dunn, J. (2015). Physical Review B – Condensed Matter and Materials Physics, 92(24). https://doi.org/10.1103/PHYSREVB.92.241405
Ligand-Induced Control of Photoconductive Gain and Doping in a Hybrid Graphene–Quantum Dot Transistor. Turyanska, L., Makarovsky, O., Svatek, S. A., Beton, P. H., Mellor, C. J., Patanè, A., Eaves, L., Thomas, N. R., Fay, M. W., Marsden, A. J., & Wilson, N. R. (2015). Advanced Electronic Materials, 1(7). https://doi.org/10.1002/AELM.201500062
Magnetic coupling in ferromagnetic semiconductor (Ga,Mn)As/(Al,Ga,Mn)As bilayers. Wang, M., Wadley, P., Campion, R. P., Rushforth, A. W., Edmonds, K. W., Gallagher, B. L., Charlton, T. R., Kinane, C. J., & Langridge, S. (2015). Journal of Applied Physics, 118(5), 53913–53913. https://doi.org/10.1063/1.4928206/140836
Measuring the mechanical properties of molecular conformers. Jarvis, S. P., Taylor, S., Baran, J. D., Champness, N. R., Larsson, J. A., & Moriarty, P. (2015). Nature Communications 2015 6:1, 6(1), 1–7. https://doi.org/10.1038/ncomms9338
Modification of perpendicular magnetic anisotropy and domain wall velocity in Pt/Co/Pt by voltage-induced strain. Shepley, P. M., Rushforth, A. W., Wang, M., Burnell, G., & Moore, T. A. (2015). Scientific Reports 2015 5:1, 5(1), 1–5. https://doi.org/10.1038/srep07921
Nano-contact microscopy of supracrystals. Sweetman, A., Goubet, N., Lekkas, I., Pileni, M. P., & Moriarty, P. (2015). Beilstein Journal of Nanotechnology 6:126, 6(1), 1229–1236. https://doi.org/10.3762/BJNANO.6.126
Nucleation and Early Stages of Layer-by-Layer Growth of Metal Organic Frameworks on Surfaces. Summerfield, A., Cebula, I., Schröder, M., & Beton, P. H. (2015). Journal of Physical Chemistry C, 119(41), 23544–23551. https://doi.org/10.1021/ACS.JPCC.5B07133
Paramagnetic to antiferromagnetic transition in epitaxial tetragonal CuMnAs (invited). Hills, V., Wadley, P., Campion, R. P., Novak, V., Beardsley, R., Edmonds, K. W., Gallagher, B. L., Ouladdiaf, B., & Jungwirth, T. (2015). Journal of Applied Physics, 117(17), 172608–172608. https://doi.org/10.1063/1.4914119/374320
Physisorption Controls the Conformation and Density of States of an Adsorbed Porphyrin. Jarvis, S. P., Taylor, S., Baran, J. D., Thompson, D., Saywell, A., Mangham, B., Champness, N. R., Larsson, J. A., & Moriarty, P. (2015). Journal of Physical Chemistry C, 119(50), 27982–27994. https://doi.org/10.1021/ACS.JPCC.5B08350
Resonant driving of magnetization precession in a ferromagnetic layer by coherent monochromatic phonons. Jäger, J. V., Scherbakov, A. V., Glavin, B. A., Salasyuk, A. S., Campion, R. P., Rushforth, A. W., Yakovlev, D. R., Akimov, A. V., & Bayer, M. (2015). Physical Review B – Condensed Matter and Materials Physics, 92(2), 020404–020404. https://doi.org/10.1103/PHYSREVB.92.020404
Strain Induced Vortex Core Switching in Planar Magnetostrictive Nanostructures. Ostler, T. A., Cuadrado, R., Chantrell, R. W., Rushforth, A. W., & Cavill, S. A. (2015). Physical Review Letters, 115(6), 067202–067202. https://doi.org/10.1103/PHYSREVLETT.115.067202
Supramolecular nesting of cyclic polymers. Kondratuk, D. V., Perdigaõ, L. M. A., Esmail, A. M. S., O’Shea, J. N., Beton, P. H., & Anderson, H. L. (2015). Nature Chemistry 2015 7:4, 7(4), 317–322. https://doi.org/10.1038/nchem.2182
Towards quantitative molecular mapping of cells by Raman microscopy: Using AFM for decoupling molecular concentration and cell topography. Boitor, R., Sinjab, F., Strohbuecker, S., Sottile, V., & Notingher, I. (2016). Faraday Discussions, 187(0), 199–212. https://doi.org/10.1039/C5FD00172B
Van der Waals-Induced Chromatic Shifts in Hydrogen-Bonded Two-Dimensional Porphyrin Arrays on Boron Nitride. Korolkov, V. V., Svatek, S. A., Summerfield, A., Kerfoot, J., Yang, L., Taniguchi, T., Watanabe, K., Champness, N. R., Besley, N. A., & Beton, P. H. (2015). ACS Nano, 9(10), 10347–10355. https://doi.org/10.1021/ACSNANO.5B04443
2014 |
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Adsorbate-induced curvature and stiffening of graphene. Svatek, S. A., Scott, O. R., Rivett, J. P. H., Wright, K., Baldoni, M., Bichoutskaia, E., Taniguchi, T., Watanabe, K., Marsden, A. J., Wilson, N. R., & Beton, P. H. (2015). Nano Letters, 15(1), 159–164. https://doi.org/10.1021/NL503308C
Bimolecular porous supramolecular networks deposited from solution on layered materials: Graphite, boron nitride and molybdenum disulphide. Korolkov, V. V., Svatek, S. A., Allen, S., Roberts, C. J., Tendler, S. J. B., Taniguchi, T., Watanabe, K., Champness, N. R., & Beton, P. H. (2014). Chemical Communications, 50(64), 8882–8885. https://doi.org/10.1039/C4CC03720K
Charge transfer from an adsorbed ruthenium-based photosensitizer through an ultra-thin aluminium oxide layer and into a metallic substrate. Gibson, A. J., Temperton, R. H., Handrup, K., Weston, M., Mayor, L. C., & O’Shea, J. N. (2014). Journal of Chemical Physics, 140(23), 234708–234708. https://doi.org/10.1063/1.4882867/73465
Co-localised Raman and force spectroscopy reveal the roles of hydrogen bonds and n-n interactions in defining the mechanical properties of diphenylalanine nano- And micro- Tubes. Sinjab, F., Bondakov, G., & Notingher, L. (2014). Applied Physics Letters, 104(25), 17–17. https://doi.org/10.1063/1.4885090/891802
Common physical framework explains phase behavior and dynamics of atomic, molecular, and polymeric network formers. Whitelam, S., Tamblyn, I., Haxton, T. K., Wieland, M. B., Champness, N. R., Garrahan, J. P., & Beton, P. H. (2014). Physical Review X, 4(1). https://doi.org/10.1103/PHYSREVX.4.011044
Comparison of micromagnetic parameters of the ferromagnetic semiconductors (Ga,Mn)(As,P) and (Ga,Mn)As. Tesařová, N., Butkovičová, D., Campion, R. P., Rushforth, A. W., Edmonds, K. W., Wadley, P., Gallagher, B. L., Schmoranzerová, E., Trojánek, F., Malý, P., Motloch, P., Novák, V., Jungwirth, T., & Němec, P. (2014). Physical Review B – Condensed Matter and Materials Physics, 90(15), 155203–155203. https://doi.org/10.1103/PHYSREVB.90.155203
Control theory for scanning probe microscopy revisited. Stirling, J. (2014). Beilstein Journal of Nanotechnology 5:38, 5(1), 337–345. https://doi.org/10.3762/BJNANO.5.38
Critical Assessment of the Evidence for Striped Nanoparticles. Stirling, J., Lekkas, I., Sweetman, A., Djuranovic, P., Guo, Q., Pauw, B., Granwehr, J., Lé Vy, R. L., & Moriarty, P. (2014). PLOS ONE, 9(11), e108482–e108482. https://doi.org/10.1371/JOURNAL.PONE.0108482
Determining Curie temperatures in dilute ferromagnetic semiconductors: High Curie temperature (Ga,Mn)As. Wang, M., Marshall, R. A., Edmonds, K. W., Rushforth, A. W., Campion, R. P., & Gallagher, B. L. (2014). Applied Physics Letters, 104(13), 132406–132406. https://doi.org/10.1063/1.4870521/23925
Domain wall motion driven by spin Hall effect—Tuning with in-plane magnetic anisotropy. Rushforth, A. W. (2014). Applied Physics Letters, 104(16), 162408–162408. https://doi.org/10.1063/1.4873583/131293
Fullerenes as adhesive layers for mechanical peeling of metallic, molecular and polymer thin films. Wieland, M. B., Slater, A. G., Mangham, B., Champness, N. R., & Beton, P. H. (2014). Beilstein Journal of Nanotechnology 5:46, 5(1), 394–401. https://doi.org/10.3762/BJNANO.5.46
Height dependent molecular trapping in stacked cyclic porphyrin nanorings. Wieland, M. B., Perdigão, L. M. A., Kondratuk, D. V., Shea, J. N. O., Anderson, H. L., & Beton, P. H. (2014a). Chemical Communications, 50(55), 7332–7335. https://doi.org/10.1039/C4CC02629B
Intramolecular bonds resolved on a semiconductor surface. Sweetman, A., Jarvis, S. P., Rahe, P., Champness, N. R., Kantorovich, L., & Moriarty, P. (2014). Physical Review B – Condensed Matter and Materials Physics, 90(16). https://doi.org/10.1103/PHYSREVB.90.165425
Mapping the force field of a hydrogen-bonded assembly. Sweetman, A. M., Jarvis, S. P., Sang, H., Lekkas, I., Rahe, P., Wang, Y., Wang, J., Champness, N. R., Kantorovich, L., & Moriarty, P. (2014). Nature Communications 2014 5:1, 5(1), 1–7. https://doi.org/10.1038/ncomms4931
Mechanical vibrations of magnetically levitated viscoelastic droplets. Temperton, R. H., Hill, R. J. A., & Sharp, J. S. (2014). Soft Matter, 10(29), 5375–5379. https://doi.org/10.1039/C4SM00982G
Origin of contact line forces during the retraction of dilute polymer solution drops. Smith, M. I., & Sharp, J. S. (2014). Langmuir, 30(19), 5455–5459. https://doi.org/10.1021/LA5005159
Packing of isophthalate tetracarboxylic acids on Au(111): Rows and disordered herringbone structures. Cebula, I., Smith, E. F., Gimenez-Lopez, M. D. C., Yang, S., Schröder, M., Champness, N. R., & Beton, P. H. (2013). Journal of Physical Chemistry C, 117(36), 18381–18385. https://doi.org/10.1021/JP402333M
Porous macromolecular dihydropyridyl frameworks exhibiting catalytic and halochromic activity. Xiao, B., Easun, T. L., Dhakshinamoorthy, A., Cebula, I., Beton, P. H., Titman, J. J., Garcia, H., Thomas, K. M., & Schröder, M. (2014). Journal of Materials Chemistry A, 2(46), 19889–19896. https://doi.org/10.1039/C4TA02521K
Room Temperature Electroluminescence from Mechanically Formed van der Waals III–VI Homojunctions and Heterojunctions. Balakrishnan, N., Kudrynskyi, Z. R., Fay, M. W., Mudd, G. W., Svatek, S. A., Makarovsky, O., Kovalyuk, Z. D., Eaves, L., Beton, P. H., Patanè, A., Balakrishnan, N., Mudd, G. W., Svatek, S. A., Makarovsky, O., Eaves, L., Beton, P. H., Patanè, A., Fay, M. W., Kudrynskyi, Z. R., & Kovalyuk, Z. D. (2014b). Advanced Optical Materials, 2(11), 1064–1069. https://doi.org/10.1002/ADOM.201400202
Room-temperature antiferromagnetic memory resistor. Marti, X., Fina, I., Frontera, C., Liu, J., Wadley, P., He, Q., Paull, R. J., Clarkson, J. D., Kudrnovský, J., Turek, I., Kuneš, J., Yi, D., Chu, J. H., Nelson, C. T., You, L., Arenholz, E., Salahuddin, S., Fontcuberta, J., Jungwirth, T., & Ramesh, R. (2014). Nature Materials 2014 13:4, 13(4), 367–374. https://doi.org/10.1038/nmat3861
Simulated structure and imaging of NTCDI on Si(1 1 1)-7 × 7: A combined STM, NC-AFM and DFT study. Jarvis, S. P., Sweetman, A. M., Lekkas, I., Champness, N. R., Kantorovich, L., & Moriarty, P. (2014). Journal of Physics: Condensed Matter, 27(5), 054004–054004. https://doi.org/10.1088/0953-8984/27/5/054004
Spin-dependent phenomena and device concepts explored in (Ga,Mn)As. Jungwirth, T., Wunderlich, J., Novák, V., Olejník, K., Gallagher, B. L., Campion, R. P., Edmonds, K. W., Rushforth, A. W., Ferguson, A. J., & Němec, P. (2014). Reviews of Modern Physics, 86(3), 855–896. https://doi.org/10.1103/REVMODPHYS.86.855
Spin-orbit torque opposing the Oersted torque in ultrathin Co/Pt bilayers. Skinner, T. D., Wang, M., Hindmarch, A. T., Rushforth, A. W., Irvine, A. C., Heiss, D., Kurebayashi, H., & Ferguson, A. J. (2014). Applied Physics Letters, 104(6), 62401–62401. https://doi.org/10.1063/1.4864399/236938
Surface-based supramolecular chemistry using hydrogen bonds. Slater, A. G., Perdigão, L. M. A., Beton, P. H., & Champness, N. R. (2014). Accounts of Chemical Research, 47(12), 3417–3427. https://doi.org/10.1021/AR5001378
Temperature dependence of spin-orbit torque effective fields in the diluted magnetic semiconductor (Ga,Mn)As. Howells, B., Edmonds, K. W., Campion, R. P., & Gallagher, B. L. (2014). Applied Physics Letters, 105(1), 12402–12402. https://doi.org/10.1063/1.4888645/596287
The power of YouTube. Moriarty, P. (2014). Physics World, 27(03), 31–31. https://doi.org/10.1088/2058-7058/27/03/36
Ultrafast delocalization of excitation in synthetic light-harvesting nanorings. Yong, C. K., Parkinson, P., Kondratuk, D. V., Chen, W. H., Stannard, A., Summerfield, A., Sprafke, J. K., O’Sullivan, M. C., Beton, P. H., Anderson, H. L., & Herz, L. M. (2014). Chemical Science, 6(1), 181–189. https://doi.org/10.1039/C4SC02424A
Uncertainties in forces extracted from non-contact atomic force microscopy measurements by fitting of long-range background forces. Sweetman, A., Stannard, A., Schwarz, U. D., & Baykara, M. Z. (2014). Beilstein Journal of Nanotechnology 5:45, 5(1), 386–393. https://doi.org/10.3762/BJNANO.5.45
Unique determination of ‘subatomic’ contrast by imaging covalent backbonding. Sweetman, A., Rahe, P., & Moriarty, P. (2014). Nano Letters, 14(5), 2265–2270. https://doi.org/10.1021/NL4041803
Vernier-Templated Synthesis, Crystal Structure, and Supramolecular Chemistry of a 12-Porphyrin Nanoring. Kondratuk, D. V., Sprafke, J. K., O’Sullivan, M. C., Perdigao, L. M. A., Saywell, A., Malfois, M., O’Shea, J. N., Beton, P. H., Thompson, A. L., & Anderson, H. L. (2014). Chemistry – A European Journal, 20(40), 12826–12834. https://doi.org/10.1002/CHEM.201403714
Visualizing the ‘Invisible’. Moriarty, P. (2015). Leonardo, 48(1), 64–65. https://doi.org/10.1162/LEON_A_00897
Voltage controlled modification of flux closure domains in planar magnetic structures for microwave applications. Parkes, D. E., Beardsley, R., Bowe, S., Isakov, I., Warburton, P. A., Edmonds, K. W., Campion, R. P., Gallagher, B. L., Rushforth, A. W., & Cavill, S. A. (2014). Applied Physics Letters, 105(6), 62405–62405. https://doi.org/10.1063/1.4892942/385467
2013 |
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Anisotropic current-controlled magnetization reversal in the ferromagnetic semiconductor (Ga,Mn)As. Li, Y., Cao, Y. F., Wei, G. N., Li, Y., Ji, Y., Wang, K. Y., Edmonds, K. W., Campion, R. P., Rushforth, A. W., Foxon, C. T., & Gallagher, B. L. (2013). Applied Physics Letters, 103(2), 22401–22401. https://doi.org/10.1063/1.4813085/129937
Calculation of the effect of tip geometry on noncontact atomic force microscopy using a qPlus sensor. Stirling, J., & Shaw, G. A. (2013). Beilstein Journal of Nanotechnology 4:2, 4(1), 10–19. https://doi.org/10.3762/BJNANO.4.2
Comparison of micromagnetic parameters of the ferromagnetic semiconductors (Ga,Mn)(As,P) and (Ga,Mn)As. Tesařová, N., Butkovičová, D., Campion, R. P., Rushforth, A. W., Edmonds, K. W., Wadley, P., Gallagher, B. L., Schmoranzerová, E., Trojánek, F., Malý, P., Motloch, P., Novák, V., Jungwirth, T., & Němec, P. (2014). Physical Review B – Condensed Matter and Materials Physics, 90(15), 155203–155203. https://doi.org/10.1103/PHYSREVB.90.155203
Crystalline anisotropic magnetoresistance in quaternary ferromagnetic semiconductor (Ga,Mn)(As,Sb). Howells, B., Wang, M., Edmonds, K. W., Wadley, P., Campion, R. P., Rushforth, A. W., Foxon, C. T., & Gallagher, B. L. (2013). Applied Physics Letters, 102(5), 52407–52407. https://doi.org/10.1063/1.4791580/1068542
Determining Curie temperatures in dilute ferromagnetic semiconductors: High Curie temperature (Ga,Mn)As. Wang, M., Marshall, R. A., Edmonds, K. W., Rushforth, A. W., Campion, R. P., & Gallagher, B. L. (2014). Applied Physics Letters, 104(13), 132406–132406. https://doi.org/10.1063/1.4870521/23925
Diagnosis of tumors during tissue-conserving surgery with integrated autofluorescence and Raman scattering microscopy. Kong, K., Rowlands, C. J., Varma, S., Perkins, W., Leach, I. H., Koloydenko, A. A., Williams, H. C., & Notingher, I. (2013). Proceedings of the National Academy of Sciences of the United States of America, 110(38), 15189–15194. https://doi.org/10.1073/PNAS.1311289110
Domain wall motion driven by spin Hall effect—Tuning with in-plane magnetic anisotropy. Rushforth, A. W. (2014). Applied Physics Letters, 104(16), 162408–162408. https://doi.org/10.1063/1.4873583/131293
Electrical control of magnetic reversal processes in magnetostrictive structures. Cavill, S. A., Parkes, D. E., Miguel, J., Dhesi, S. S., Edmonds, K. W., Campion, R. P., & Rushforth, A. W. (2013). Applied Physics Letters, 102(3), 32405–32405. https://doi.org/10.1063/1.4789396/385177
Enhanced inverse spin-Hall effect in ultrathin ferromagnetic/normal metal bilayers. Skinner, T. D., Kurebayashi, H., Fang, D., Heiss, D., Irvine, A. C., Hindmarch, A. T., Wang, M., Rushforth, A. W., & Ferguson, A. J. (2013). Applied Physics Letters, 102(7), 72401–72401. https://doi.org/10.1063/1.4792693/24374
High Curie temperatures at low compensation in the ferromagnetic semiconductor (Ga,Mn)As. Wang, M., Edmonds, K. W., Gallagher, B. L., Rushforth, A. W., Makarovsky, O., Patanè, A., Campion, R. P., Foxon, C. T., Novak, V., & Jungwirth, T. (2013). Physical Review B – Condensed Matter and Materials Physics, 87(12), 121301–121301. https://doi.org/10.1103/PHYSREVB.87.121301
Improving secondary ion mass spectrometry C60n+ sputter depth profiling of challenging polymers with nitric oxide gas dosing. Havelund, R., Licciardello, A., Bailey, J., Tuccitto, N., Sapuppo, D., Gilmore, I. S., Sharp, J. S., Lee, J. L. S., Mouhib, T., & Delcorte, A. (2013). Analytical Chemistry, 85(10), 5064–5070. https://doi.org/10.1021/AC4003535
Magnetic and structural properties of (Ga,Mn)As/(Al,Ga,Mn)As bilayer films. Wang, M., Rushforth, A. W., Hindmarch, A. T., Campion, R. P., Edmonds, K. W., Staddon, C. R., Foxon, C. T., & Gallagher, B. L. (2013). Applied Physics Letters, 102(11), 112404–112404. https://doi.org/10.1063/1.4795444/25510
Magnetostrictive thin films for microwave spintronics. Parkes, D. E., Shelford, L. R., Wadley, P., Holý, V., Wang, M., Hindmarch, A. T., Van Der Laan, G., Campion, R. P., Edmonds, K. W., Cavill, S. A., & Rushforth, A. W. (2013). Scientific Reports 2013 3:1, 3(1), 1–6. https://doi.org/10.1038/srep02220
Mechanical stiffening of porphyrin nanorings through supramolecular columnar stacking. Svatek, S. A., Perdigão, L. M. A., Stannard, A., Wieland, M. B., Kondratuk, D. V., Anderson, H. L., O’Shea, J. N., & Beton, P. H. (2013). Nano Letters, 13(7), 3391–3395. https://doi.org/10.1021/NL4017557
Non-invasive label-free monitoring the cardiac differentiation of human embryonic stem cells in-vitro by Raman spectroscopy. Pascut, F. C., Kalra, S., George, V., Welch, N., Denning, C., & Notingher, I. (2013). Biochimica et Biophysica Acta (BBA) – General Subjects, 1830(6), 3517–3524. https://doi.org/10.1016/J.BBAGEN.2013.01.030
Obtaining the structure factors for an epitaxial film using Cu X-ray radiation. Wadley, P., Crespi, A., Gázquez, J., Roldán, M. A., García, P., Novak, V., Campion, R., Jungwirth, T., Rinaldi, C., Martí, X., Holy, V., Frontera, C., & Rius, J. (2013). Journal of Applied Crystallography, 46(6), 1749–1754. https://doi.org/10.1107/S002188981302414X
Optimal geometry for a quartz multipurpose SPM sensor. Stirling, J. (2013). Beilstein Journal of Nanotechnology 4:43, 4(1), 370–376. https://doi.org/10.3762/BJNANO.4.43
Packing of isophthalate tetracarboxylic acids on Au(111): Rows and disordered herringbone structures. Cebula, I., Smith, E. F., Gimenez-Lopez, M. D. C., Yang, S., Schröder, M., Champness, N. R., & Beton, P. H. (2013). Journal of Physical Chemistry C, 117(36), 18381–18385. https://doi.org/10.1021/JP402333M
Picosecond inverse magnetostriction in galfenol thin films. Jäger, J. V., Scherbakov, A. V., Linnik, T. L., Yakovlev, D. R., Wang, M., Wadley, P., Holy, V., Cavill, S. A., Akimov, A. V., Rushforth, A. W., & Bayer, M. (2013). Applied Physics Letters, 103(3), 32409–32409. https://doi.org/10.1063/1.4816014/312139
Quantized phonon modes in loaded polymer films. Farmer, D. J., Akimov, A. V., Sharp, J. S., & Kent, A. J. (2013). Journal of Applied Physics, 113(3), 25–25. https://doi.org/10.1063/1.4774689/346282
Recovering molecular orientation from convoluted orbitals. Lakin, A. J., Chiutu, C., Sweetman, A. M., Moriarty, P., & Dunn, J. L. (2013). Physical Review B – Condensed Matter and Materials Physics, 88(3). https://doi.org/10.1103/PHYSREVB.88.035447
Scanning probe image wizard: A toolbox for automated scanning probe microscopy data analysis. Stirling, J., Woolley, R. A. J., & Moriarty, P. (2013). Review of Scientific Instruments, 84(11), 113701–113701. https://doi.org/10.1063/1.4827076/358730
Simultaneous noncontact AFM and STM of Ag:Si(111)-(√3×√3) R30â̂̃. Sweetman, A., Stannard, A., Sugimoto, Y., Abe, M., Morita, S., & Moriarty, P. (2013). Physical Review B – Condensed Matter and Materials Physics, 87(7). https://doi.org/10.1103/PHYSREVB.87.075310
Single molecule magnets with protective ligand shells on gold and titanium dioxide surfaces: In situ electrospray deposition and x-ray absorption spectroscopy. Handrup, K., Richards, V. J., Weston, M., Champness, N. R., & O’Shea, J. N. (2013). Journal of Chemical Physics, 139(15), 154708–154708. https://doi.org/10.1063/1.4825382/193941
Solution preparation of two-dimensional covalently linked networks by polymerization of 1,3,5-Tri(4-iodophenyl)benzene on Au(111). Eder, G., Smith, E. F., Cebula, I., Heckl, W. M., Beton, P. H., & Lackinger, M. (2013). ACS Nano, 7(4), 3014–3021. https://doi.org/10.1021/NN400337V
Spin-dependent phenomena and device concepts explored in (Ga,Mn)As. Jungwirth, T., Wunderlich, J., Novák, V., Olejník, K., Gallagher, B. L., Campion, R. P., Edmonds, K. W., Rushforth, A. W., Ferguson, A. J., & Němec, P. (2014). Reviews of Modern Physics, 86(3), 855–896. https://doi.org/10.1103/REVMODPHYS.86.855
Spin-orbit torque opposing the Oersted torque in ultrathin Co/Pt bilayers. Skinner, T. D., Wang, M., Hindmarch, A. T., Rushforth, A. W., Irvine, A. C., Heiss, D., Kurebayashi, H., & Ferguson, A. J. (2014). Applied Physics Letters, 104(6), 62401–62401. https://doi.org/10.1063/1.4864399/236938
Structural development and energy dissipation in simulated silicon apices. Jarvis, S. P., Kantorovich, L., & Moriarty, P. (2013). Beilstein Journal of Nanotechnology 4:106, 4(1), 941–948. https://doi.org/10.3762/BJNANO.4.106
Tetragonal phase of epitaxial room-temperature antiferromagnet CuMnAs. Wadley, P., Novák, V., Campion, R. P., Rinaldi, C., Martí, X., Reichlová, H., Železný, J., Gazquez, J., Roldan, M. A., Varela, M., Khalyavin, D., Langridge, S., Kriegner, D., MácA, F., Mašek, J., Bertacco, R., Holý, V., Rushforth, A. W., Edmonds, K. W., … Jungwirth, T. (2013). Nature Communications 2013 4:1, 4(1), 1–6. https://doi.org/10.1038/ncomms3322
Tuning the Bandgap of Exfoliated InSe Nanosheets by Quantum Confinement. Mudd, G. W., Svatek, S. A., Ren, T., Patanè, A., Makarovsky, O., Eaves, L., Beton, P. H., Kovalyuk, Z. D., Lashkarev, G. V., Kudrynskyi, Z. R., Dmitriev G W Mudd, A. I., Svatek, S. A., Ren, T. H., Patanè, A., Makarovsky, O., Eaves, L., Beton, P. H., Kovalyuk, Z. D., Lashkarev, G. V., … Dmitriev, A. I. (2013). Advanced Materials, 25(40), 5714–5718. https://doi.org/10.1002/ADMA.201302616
Vibrational modes of elongated sessile liquid droplets. Temperton, R. H., & Sharp, J. S. (2013). Langmuir, 29(15), 4737–4742. https://doi.org/10.1021/LA304520C
2012 |
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Adsorption of dipyrrin-based dye complexes on a rutile TiO 2(110) surface. Weston, M., Reade, T. J., Handrup, K., Champness, N. R., & OShea, J. N. (2012). Journal of Physical Chemistry C, 116(34), 18184–18192. https://doi.org/10.1021/JP3025864
Analysing Surface Structures on (Ga, Mn)As by Atomic Force Microscopy. Piano, S., Rushforth, A. W., Edmonds, K. W., Campion, R. P., Adesso, G., & Gallagher, B. L. (2012). Journal of Nanoscience and Nanotechnology, 12(9), 7545–7549. https://doi.org/10.1166/JNN.2012.6553
Broken symmetry and the variation of critical properties in the phase behaviour of supramolecular rhombus tilings. Stannard, A., Russell, J. C., Blunt, M. O., Salesiotis, C., Giménez-López, M. D. C., Taleb, N., Schröder, M., Champness, N. R., Garrahan, J. P., & Beton, P. H. (2011). Nature Chemistry 2011 4:2, 4(2), 112–117. https://doi.org/10.1038/nchem.1199
Charge transfer from an aromatic adsorbate to a semiconductor TiO 2 surface probed on the femtosecond time scale with resonant inelastic X-ray scattering. Britton, A. J., Weston, M., & O’Shea, J. N. (2012). Physical Review Letters, 109(1), 017401–017401. https://doi.org/10.1103/PHYSREVLETT.109.017401
Complex design of dissipation signals in non-contact atomic force microscopy. Bamidele, J., Li, Y. J., Jarvis, S., Naitoh, Y., Sugawara, Y., & Kantorovich, L. (2012). Physical Chemistry Chemical Physics, 14(47), 16250–16257. https://doi.org/10.1039/C2CP43121A
Cytoplasmic RNA in undifferentiated neural stem cells: A potential label-free raman spectral marker for assessing the undifferentiated status. Ghita, A., Pascut, F. C., Mather, M., Sottile, V., & Notingher, I. (2012). Analytical Chemistry, 84(7), 3155–3162. https://doi.org/10.1021/AC202994E
Effect of the tip state during qPlus noncontact atomic force microscopy of Si(100) at 5 K: Probing the probe. Sweetman, A., Jarvis, S., Danza, R., & Moriarty, P. (2012). Beilstein Journal of Nanotechnology 3:3, 3(1), 25–32. https://doi.org/10.3762/BJNANO.3.3
Experimental observation of sub-femtosecond charge transfer in a model water splitting dye-sensitized solar cell. Weston, M., Handrup, K., Reade, T. J., Champness, N. R., & O’Shea, J. N. (2012). Journal of Chemical Physics, 137(22), 224706–224706. https://doi.org/10.1063/1.4770496/194939
Fabrication of metallic magnetic nanostructures by argon ion milling using a reversed-polarity planar magnetron ion source. Hindmarch, A. T., Parkes, D. E., & Rushforth, A. W. (2012). Vacuum, 86(10), 1600–1604. https://doi.org/10.1016/J.VACUUM.2012.02.019
Giant amyloid spherulites reveal their true colours. Smith, M. I., Sharp, J. S., & Roberts, C. J. (2012). Soft Matter, 8(14), 3751–3755. https://doi.org/10.1039/C2SM25147G
Identifying passivated dynamic force microscopy tips on H:Si(100). Sharp, P., Jarvis, S., Woolley, R., Sweetman, A., Kantorovich, L., Pakes, C., & Moriarty, P. (2012). Applied Physics Letters, 100(23), 233120–233120. https://doi.org/10.1063/1.4726086/282134
Investigations of the supramolecular structure of individual diphenylalanine nano- and microtubes by polarized Raman microspectroscopy. Lekprasert, B., Korolkov, V., Falamas, A., Chis, V., Roberts, C. J., Tendler, S. J. B., & Notingher, I. (2012). Biomacromolecules, 13(7), 2181–2187. https://doi.org/10.1021/BM3005929
Label-free molecular analysis of live Neospora caninum tachyzoites in host cells by selective scanning Raman micro-spectroscopy. Kong, K., Rowlands, C. J., Elsheikha, H., & Notingher, I. (2012). Analyst, 137(18), 4119–4122. https://doi.org/10.1039/C2AN35640F
Magnetic domain wall propagation under ferroelectric control. Mikheev, E., Stolichnov, I., De Ranieri, E., Wunderlich, J., Trodahl, H. J., Rushforth, A. W., Riester, S. W. E., Campion, R. P., Edmonds, K. W., Gallagher, B. L., & Setter, N. (2012). Physical Review B – Condensed Matter and Materials Physics, 86(23), 235130–235130. https://doi.org/10.1103/PHYSREVB.86.235130
Manifestation of dynamic Jahn–Teller distortions and surface interactions in scanning tunnelling microscopy images of the fullerene anion C−60. Man, H., Halim, M., Sawa, H., -, al, Khomskii -, D. I., compounds Sohan Lal, C., Pandey -, S. K., Dunn, J. L., Lakin, A. J., & Hands, I. D. (2012). New Journal of Physics, 14(8), 083038–083038. https://doi.org/10.1088/1367-2630/14/8/083038
Near-field Raman spectroscopy of biological nanomaterials by in situ laser-induced synthesis of tip-enhanced Raman spectroscopy tips. Woolley, R. A. J., Roberts, C. J., Lekprasert, B., Sinjab, F., Notingher, I., & Tendler, S. J. B. (2012). Optics Letters, Vol. 37, Issue 12, Pp. 2256-2258, 37(12), 2256–2258. https://doi.org/10.1364/OL.37.002256
Non-volatile ferroelectric gating of magnetotransport anisotropy in (Ga,Mn)(As,P). Mikheev, E., Stolichnov, I., Huang, Z., Rushforth, A. W., Haigh, J. A., Campion, R. P., Edmonds, K. W., Gallagher, B. L., & Setter, N. (2012). Applied Physics Letters, 100(26), 262906–262906. https://doi.org/10.1063/1.4731245/126514
Non-volatile voltage control of magnetization and magnetic domain walls in magnetostrictive epitaxial thin films. Parkes, D. E., Cavill, S. A., Hindmarch, A. T., Wadley, P., McGee, F., Staddon, C. R., Edmonds, K. W., Campion, R. P., Gallagher, B. L., & Rushforth, A. W. (2012). Applied Physics Letters, 101(7), 72402–72402. https://doi.org/10.1063/1.4745789/111859
Piezoelectric strain induced variation of the magnetic anisotropy in a high Curie temperature (Ga,Mn)As sample. Casiraghi, A., Rushforth, A. W., Zemen, J., Haigh, J. A., Wang, M., Edmonds, K. W., Campion, R. P., & Gallagher, B. L. (2012). Applied Physics Letters, 101(8), 82406–82406. https://doi.org/10.1063/1.4746250/111961
Precise orientation of a single C 60 molecule on the tip of a scanning probe microscope. Chiutu, C., Sweetman, A. M., Lakin, A. J., Stannard, A., Jarvis, S., Kantorovich, L., Dunn, J. L., & Moriarty, P. (2012). Physical Review Letters, 108(26). https://doi.org/10.1103/PHYSREVLETT.108.268302
Random and ordered phases of off-lattice rhombus tiles. Whitelam, S., Tamblyn, I., Beton, P. H., & Garrahan, J. P. (2012). Physical Review Letters, 108(3). https://doi.org/10.1103/PHYSREVLETT.108.035702
Rapid acquisition of Raman spectral maps through minimal sampling: Applications in tissue imaging. Rowlands, C. J., Varma, S., Perkins, W., Leach, I., Williams, H., & Notingher, I. (2012). Journal of Biophotonics, 5(3), 220–229. https://doi.org/10.1002/JBIO.201100098
Resonant properties of sessile droplets; contact angle dependence of the resonant frequency and width in glycerol/water mixtures. Sharp, J. S. (2011). Soft Matter, 8(2), 399–407. https://doi.org/10.1039/C1SM06916K
Role of orbital overlap in atomic manipulation. Jarvis, S., Sweetman, A., Bamidele, J., Kantorovich, L., & Moriarty, P. (2012). Physical Review B – Condensed Matter and Materials Physics, 85(23). https://doi.org/10.1103/PHYSREVB.85.235305
Room-temperature antiferromagnetism in CuMnAs. MácA, F., Mašek, J., Stelmakhovych, O., Martí, X., Reichlová, H., Uhlířová, K., Beran, P., Wadley, P., Novák, V., & Jungwirth, T. (2012). Journal of Magnetism and Magnetic Materials, 324(8), 1606–1612. https://doi.org/10.1016/J.JMMM.2011.12.017
Surface transfer doping of hydrogen-terminated diamond by C 60F 48: Energy level scheme and doping efficiency. Edmonds, M. T., Wanke, M., Tadich, A., Vulling, H. M., Rietwyk, K. J., Sharp, P. L., Stark, C. B., Smets, Y., Schenk, A., Wu, Q. H., Ley, L., & Pakes, C. I. (2012). Journal of Chemical Physics, 136(12), 124701–124701. https://doi.org/10.1063/1.3695643/72668
Two Vernier-Templated Routes to a 24-Porphyrin Nanoring. Kondratuk, D. V., Perdigao, L. M. A., O’Sullivan, M. C., Svatek, S., Smith, G., O’Shea, J. N., Beton, P. H., & Anderson, H. L. (2012). Angewandte Chemie International Edition, 51(27), 6696–6699. https://doi.org/10.1002/ANIE.201202870
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A single centre water splitting dye complex adsorbed on rutile TiO 2(110): Photoemission, x-ray absorption, and optical spectroscopy. Weston, M., Reade, T. J., Britton, A. J., Handrup, K., Champness, N. R., & Oshea, J. N. (2011). Journal of Chemical Physics, 135(11), 114703–114703. https://doi.org/10.1063/1.3637497/190056
Automated probe microscopy via evolutionary optimization at the atomic scale. Woolley, R. A. J., Stirling, J., Radocea, A., Krasnogor, N., & Moriarty, P. (2011). Applied Physics Letters, 98(25). https://doi.org/10.1063/1.3600662/340700
Broken symmetry and the variation of critical properties in the phase behaviour of supramolecular rhombus tilings. Stannard, A., Russell, J. C., Blunt, M. O., Salesiotis, C., Giménez-López, M. D. C., Taleb, N., Schröder, M., Champness, N. R., Garrahan, J. P., & Beton, P. H. (2011). Nature Chemistry 2011 4:2, 4(2), 112–117. https://doi.org/10.1038/nchem.1199
Characterization and local magnetic modification of ion irradiated GaMnAs. Li, L., Yao, S. D., Roshchupkina, O., Prucnal, S., Akhmadaliev, S., Campion, R. P., Rushforth, A. W., Fassbender, J., Helm, M., Gallagher, B. L., Timm, C., Schmidt, H., & Zhou, S. (2011). Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms, 269(21), 2469–2473. https://doi.org/10.1016/J.NIMB.2011.07.096
Charge transfer dynamics of model charge transfer centers of a multicenter water splitting dye complex on rutile TiO2(110). Weston, M., Britton, A. J., & O’Shea, J. N. (2011). Journal of Chemical Physics, 134(5), 54705–54705. https://doi.org/10.1063/1.3549573/983577
Charge transfer interactions of a Ru(II) dye complex and related ligand molecules adsorbed on Au(111). Britton, A. J., Weston, M., Taylor, J. B., Rienzo, A., Mayor, L. C., & O’Shea, J. N. (2011). Journal of Chemical Physics, 135(16), 164702–164702. https://doi.org/10.1063/1.3656682/70882
Coherent hypersonic closed-pipe organ like modes in supported polymer films. Akimov, A. V., Young, E. S. K., Sharp, J. S., Gusev, V., & Kent, A. J. (2011). Applied Physics Letters, 99(2). https://doi.org/10.1063/1.3605567/937820
Contact angle dependence of the resonant frequency of sessile water droplets. Sharp, J. S., Farmer, D. J., & Kelly, J. (2011). Langmuir, 27(15), 9367–9371. https://doi.org/10.1021/LA201984Y
Detection of stacking faults breaking the [110]/[11̄0] symmetry in ferromagnetic semiconductors (Ga,Mn)As and (Ga,Mn)(As,P). Kopecký, M., Kub, J., MácA, F., Mažek, J., Pacherová, O., Rushforth, A. W., Gallagher, B. L., Campion, R. P., Novák, V., & Jungwirth, T. (2011). Physical Review B – Condensed Matter and Materials Physics, 83(23), 235324–235324. https://doi.org/10.1103/PHYSREVB.83.235324
Dewetting of Au nanoparticle assemblies. Alhummiany, H., Jarvis, S., Woolley, R. A. J., Stannard, A., Blunt, M., & Moriarty, P. (2011). Journal of Materials Chemistry, 21(42), 16983–16989. https://doi.org/10.1039/C1JM12182K
Dewetting-mediated pattern formation in nanoparticle assemblies. Stannard, A. (2011). Journal of Physics: Condensed Matter, 23(8), 083001–083001. https://doi.org/10.1088/0953-8984/23/8/083001
Dimerization of tri(4-bromophenyl)benzene by aryl-aryl coupling from solution on a gold surface. Russell, J. C., Blunt, M. O., Garfitt, J. M., Scurr, D. J., Alexander, M., Champness, N. R., & Beton, P. H. (2011). Journal of the American Chemical Society, 133(12), 4220–4223. https://doi.org/10.1021/JA110837S
Discrimination between basal cell carcinoma and hair follicles in skin tissue sections by Raman micro-spectroscopy. Larraona-Puy, M., Ghita, A., Zoladek, A., Perkins, W., Varma, S., Leach, I. H., Koloydenko, A. A., Williams, H., & Notingher, I. (2011). Journal of Molecular Structure, 993(1–3), 57–61. https://doi.org/10.1016/J.MOLSTRUC.2010.10.046
Effects of substrate constraint on crack pattern formation in thin films of colloidal polystyrene particles. Smith, M. I., & Sharp, J. S. (2011). Langmuir, 27(13), 8009–8017. https://doi.org/10.1021/LA2000624
Enhanced Curie temperature and nonvolatile switching of ferromagnetism in ultrathin (Ga,Mn)As channels. Stolichnov, I., Riester, S. W. E., Mikheev, E., Setter, N., Rushforth, A. W., Edmonds, K. W., Campion, R. P., Foxon, C. T., Gallagher, B. L., Jungwirth, T., & Trodahl, H. J. (2011a). Physical Review B – Condensed Matter and Materials Physics, 83(11), 115203–115203. https://doi.org/10.1103/PHYSREVB.83.115203
Fast switching of magnetization in the ferromagnetic semiconductor (Ga,Mn)(As,P) using nonequilibrium phonon pulses. Casiraghi, A., Walker, P., Akimov, A. V., Edmonds, K. W., Rushforth, A. W., De Ranieri, E., Campion, R. P., Gallagher, B. L., & Kent, A. J. (2011). Applied Physics Letters, 99(26), 262503–262503. https://doi.org/10.1063/1.3672029/321978
Ferroelectric polymer gates for non-volatile field effect control of ferromagnetism in (Ga, Mn)As layers. Stolichnov, I., Riester, S. W. E., Mikheev, E., Setter, N., Rushforth, A. W., Edmonds, K. W., Campion, R. P., Foxon, C. T., Gallagher, B. L., Jungwirth, T., & Trodahl, H. J. (2011b). Nanotechnology, 22(25), 254004–254004. https://doi.org/10.1088/0957-4484/22/25/254004
Fluorination of the diamond surface by photoinduced dissociation of C 60F48. Rietwyk, K. J., Wanke, M., Vulling, H. M., Edmonds, M. T., Sharp, P. L., Smets, Y., Wu, Q. H., Tadich, A., Rubanov, S., Moriarty, P. J., Ley, L., & Pakes, C. I. (2011). Physical Review B – Condensed Matter and Materials Physics, 84(3). https://doi.org/10.1103/PHYSREVB.84.035404
Graphene formation by decomposition of C60. Perdigão, L. M. A., Sabki, S. N., Garfitt, J. M., Capiod, P., & Beton, P. H. (2011). Journal of Physical Chemistry C, 115(15), 7472–7476. https://doi.org/10.1021/JP111462T
Guest-induced growth of a surface-based supramolecular bilayer. Blunt, M. O., Russell, J. C., Gimenez-Lopez, M. D. C., Taleb, N., Lin, X., Schröder, M., Champness, N. R., & Beton, P. H. (2010). Nature Chemistry 2010 3:1, 3(1), 74–78. https://doi.org/10.1038/nchem.901
Haptic-STM: A human-in-the-loop interface to a scanning tunneling microscope. Perdigão, L. M. A., & Saywell, A. (2011). Review of Scientific Instruments, 82(7). https://doi.org/10.1063/1.3600572/354412
Infrared dielectric mirrors based on thin film multilayers of polystyrene and polyvinylpyrrolidone. Bailey, J., & Sharp, J. S. (2011). Journal of Polymer Science Part B: Polymer Physics, 49(10), 732–739. https://doi.org/10.1002/POLB.22238
Magnetic linear dichroism in the angular dependence of core-level photoemission from (Ga,Mn)as using hard x rays. Edmonds, K. W., Van Der Laan, G., Farley, N. R. S., Campion, R. P., Gallagher, B. L., Foxon, C. T., Cowie, B. C. C., Warren, S., & Johal, T. K. (2011). Physical Review Letters, 107(19), 197601–197601. https://doi.org/10.1103/PHYSREVLETT.107.197601
Magnetism and carrier modulation in (Ga,Mn)As/organic-dye hybrid devices. Herrera Diez, L., Konuma, M., Placidi, E., Arciprete, F., Rushforth, A. W., Campion, R. P., Gallagher, B. L., Honolka, J., & Kern, K. (2011). Applied Physics Letters, 98(2). https://doi.org/10.1063/1.3543843/122479
Manipulating Si(100) at 5 K using qPlus frequency modulated atomic force microscopy: Role of defects and dynamics in the mechanical switching of atoms. Sweetman, A., Jarvis, S., Danza, R., Bamidele, J., Kantorovich, L., & Moriarty, P. (2011). Physical Review B – Condensed Matter and Materials Physics, 84(8). https://doi.org/10.1103/PHYSREVB.84.085426
Microstructural, chemical bonding, stress development and charge storage characteristics of Ge nanocrystals embedded in hafnium oxide. Das, S., Singha, R. K., Manna, S., Gangopadhyay, S., Dhar, A., & Ray, S. K. (2011). Journal of Nanoparticle Research, 13(2), 587–595. https://doi.org/10.1007/S11051-010-0054-8
Origin of in-plane uniaxial magnetic anisotropy in CoFeB amorphous ferromagnetic thin films. Hindmarch, A. T., Rushforth, A. W., Campion, R. P., Marrows, C. H., & Gallagher, B. L. (2011). Physical Review B – Condensed Matter and Materials Physics, 83(21), 212404–212404. https://doi.org/10.1103/PHYSREVB.83.212404
Particle velocimetry inside Newtonian and non-Newtonian droplets impacting a hydrophobic surface. Smith, M. I., & Bertola, V. (2011). Experiments in Fluids, 50(5), 1385–1391. https://doi.org/10.1007/S00348-010-0998-6
Polarized x-ray spectroscopy of quaternary ferromagnetic semiconductor (Ga,Mn)(As,P) thin films. Wadley, P., Casiraghi, A., Wang, M., Edmonds, K. W., Campion, R. P., Rushforth, A. W., Gallagher, B. L., Staddon, C. R., Wang, K. Y., Der Laan, G. V., & Arenholz, E. (2011). Applied Physics Letters, 99(2), 22502–22502. https://doi.org/10.1063/1.3609776/937752
Simultaneous Surface-Enhanced Raman Spectroscopy (SERS) and Atomic Force Microscopy (AFM) for Label-Free Physicochemical Analysis of Lipid Bilayers. NOTINGHER, IOAN., LARRAONA-PUY, MARTA., & SWEETENHAM, C. S. (2011). Applied Spectroscopy, Vol. 65, Issue 12, Pp. 1387-1392, 65(12), 1387–1392.
Single molecule magnets on a gold surface: In situ electrospray deposition, x-ray absorption and photoemission. Saywell, A., Britton, A. J., Taleb, N., Del Carmen Giménez-López, M., Champness, N. R., Beton, P. H., & O’shea, J. N. (2011). Nanotechnology, 22(7), 075704–075704. https://doi.org/10.1088/0957-4484/22/7/075704
Surface morphology and magnetic anisotropy in (Ga,Mn)As. Piano, S., Marti, X., Rushforth, A. W., Edmonds, K. W., Campion, R. P., Wang, M., Caha, O., Schülli, T. U., Hol, V., & Gallagher, B. L. (2011). Applied Physics Letters, 98(15), 152503–152503. https://doi.org/10.1063/1.3579534/340278
Tailoring the magnetism of GaMnAs films by ion irradiation. Li, L., Yao, S. D., Zhou, S., Bürger, D., Roshchupkina, O., Akhmadaliev, S., Rushforth, A. W., Campion, R. P., Fassbender, J., Helm, M., Gallagher, B. L., Timm, C., & Schmidt, H. (2011). Journal of Physics D: Applied Physics, 44(4), 045001–045001. https://doi.org/10.1088/0022-3727/44/4/045001
Toggling bistable atoms via mechanical switching of bond angle. Sweetman, A., Jarvis, S., Danza, R., Bamidele, J., Gangopadhyay, S., Shaw, G. A., Kantorovich, L., & Moriarty, P. (2011). Physical Review Letters, 106(13). https://doi.org/10.1103/PHYSREVLETT.106.136101
Two-dimensional supramolecular chemistry on surfaces. Slater, A. G., Beton, P. H., & Champness, N. R. (2011). Chemical Science, 2(8), 1440–1448. https://doi.org/10.1039/C1SC00251A
Vernier templating and synthesis of a 12-porphyrin nano-ring. O’Sullivan, M. C., Sprafke, J. K., Kondratuk, D. V., Rinfray, C., Claridge, T. D. W., Saywell, A., Blunt, M. O., O’Shea, J. N., Beton, P. H., Malfois, M., & Anderson, H. L. (2011). Nature 2011 469:7328, 469(7328), 72–75. https://doi.org/10.1038/nature09683
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A novel tripod-driven platform for in-situ positioning of samples and electrical probes in a TEM. Medford, B. D., Rogers, B. L., Laird, D., Berdunov, N., Lockwood, A. J., Gnanavel, T., Guan, W., Wang, J., Möbus, G., Inkson, B. J., & Beton, P. H. (2010). Journal of Physics: Conference Series, 241(1), 012057–012057. https://doi.org/10.1088/1742-6596/241/1/012057
Above-barrier surface electron resonances induced by a molecular network. Stiufiuc, R., Perdigão, L. M. A., Grandidier, B., Deresmes, D., Allan, G., Delerue, C., Stiévenard, D., Beton, P. H., Erwin, S. C., Sassi, M., Oison, V., & Debierre, J. M. (2010). Physical Review B – Condensed Matter and Materials Physics, 81(4). https://doi.org/10.1103/PHYSREVB.81.045421
Calculation of images of oriented C60 molecules using molecular orbital theory. Hands, I. D., Dunn, J. L., & Bates, C. A. (2010a). Physical Review B – Condensed Matter and Materials Physics, 81(20). https://doi.org/10.1103/PHYSREVB.81.205440
Charge transfer between the Au(111) surface and adsorbed C60: Resonant photoemission and new core-hole decay channels. Britton, A. J., Rienzo, A., O’Shea, J. N., & Schulte, K. (2010). Journal of Chemical Physics, 133(9), 94705–94705. https://doi.org/10.1063/1.3488299/189016
Coherent elastic waves in a one-dimensional polymer hypersonic crystal. Walker, P. M., Sharp, J. S., Akimov, A. V., & Kent, A. J. (2010). Applied Physics Letters, 97(7), 73106–73106. https://doi.org/10.1063/1.3479929/339593
Conformation and Packing of Porphyrin Polymer Chains Deposited Using Electrospray on a Gold Surface. Saywell, A., Sprafke, J. K., Esdaile, L. J., Britton, A. J., Rienzo, A., Anderson, H. L., OShea, J. N., Beton, P. H., Saywell, A., Britton, A. J., Rienzo, A., Beton, P. H., Sprafke, J. K., Esdaile, L. J., & Anderson, H. L. (2010). Angewandte Chemie International Edition, 49(48), 9136–9139. https://doi.org/10.1002/ANIE.201004896
Current-driven domain wall motion across a wide temperature range in a (Ga,Mn)(As,P) device. Wang, K. Y., Edmonds, K. W., Irvine, A. C., Tatara, G., De Ranieri, E., Wunderlich, J., Olejnik, K., Rushforth, A. W., Campion, R. P., Williams, D. A., Foxon, C. T., & Gallagher, B. L. (2010). Applied Physics Letters, 97(26), 262102–262102. https://doi.org/10.1063/1.3532095/339579
Dilatancy in the flow and fracture of stretched colloidal suspensions. Smith, M. I., Besseling, R., Cates, M. E., & Bertola, V. (2010). Nature Communications 2010 1:1, 1(1), 1–5. https://doi.org/10.1038/ncomms1119
Directing the formation of nanostructured rings via local oxidation. Stannard, A., Alhummiany, H., Pauliac-Vaujour, E., Sharp, J. S., Moriarty, P., & Thiele, U. (2010). Langmuir, 26(17), 13892–13896. https://doi.org/10.1021/LA1004787
Domain wall resistance in perpendicular (Ga,Mn)As: Dependence on pinning. Wang, K. Y., Edmonds, K. W., Irvine, A. C., Wunderlich, J., Olejnik, K., Rushforth, A. W., Campion, R. P., Williams, D. A., Foxon, C. T., & Gallagher, B. L. (2010). Journal of Magnetism and Magnetic Materials, 322(21), 3481–3484. https://doi.org/10.1016/J.JMMM.2010.06.049
Effect of polymer additives on the wetting of impacting droplets. Smith, M. I., & Bertola, V. (2010). Physical Review Letters, 104(15). https://doi.org/10.1103/PHYSREVLETT.104.154502
Element-resolved orbital polarization in (III,Mn)As ferromagnetic semiconductors from K -edge x-ray magnetic circular dichroism. Wadley, P., Freeman, A. A., Edmonds, K. W., Van Der Laan, G., Chauhan, J. S., Campion, R. P., Rushforth, A. W., Gallagher, B. L., Foxon, C. T., Wilhelm, F., Smekhova, A. G., & Rogalev, A. (2010). Physical Review B – Condensed Matter and Materials Physics, 81(23), 235208–235208. https://doi.org/10.1103/PHYSREVB.81.235208
Entropically stabilized growth of a two-dimensional random tiling. Stannard, A., Blunt, M. O., Beton, P. H., & Garrahan, J. P. (2010). Physical Review E – Statistical, Nonlinear, and Soft Matter Physics, 82(4). https://doi.org/10.1103/PHYSREVE.82.041109
Exchange bias in a ferromagnetic semiconductor induced by a ferromagnetic metal: Fe/(Ga,Mn)As bilayer films studied by XMCD measurements and SQUID magnetometry. Olejnik, K., Wadley, P., Haigh, J. A., Edmonds, K. W., Campion, R. P., Rushforth, A. W., Gallagher, B. L., Foxon, C. T., Jungwirth, T., Wunderlich, J., Dhesi, S. S., Cavill, S. A., Van Der Laan, G., & Arenholz, E. (2010). Physical Review B – Condensed Matter and Materials Physics, 81(10), 104402–104402. https://doi.org/10.1103/PHYSREVB.81.104402
Fullerene adsorption on semiconductor surfaces. Moriarty, P. J. (2010). Surface Science Reports, 65(7), 175–227. https://doi.org/10.1016/J.SURFREP.2010.08.001
Guest-induced growth of a surface-based supramolecular bilayer. Blunt, M. O., Russell, J. C., Gimenez-Lopez, M. D. C., Taleb, N., Lin, X., Schröder, M., Champness, N. R., & Beton, P. H. (2010). Nature Chemistry 2010 3:1, 3(1), 74–78. https://doi.org/10.1038/nchem.901
Magnetic aftereffect in compressively strained GaMnAs studied using Kerr microscopy. Herrera Diez, L., Honolka, J., Kern, K., Kronmüller, H., Placidi, E., Arciprete, F., Rushforth, A. W., Campion, R. P., & Gallagher, B. L. (2010). Physical Review B – Condensed Matter and Materials Physics, 81(9), 094412–094412. https://doi.org/10.1103/PHYSREVB.81.094412
Maintenance of pluripotency in human embryonic stem cells cultured on a synthetic substrate in conditioned medium. Mahlstedt, M. M., Anderson, D., Sharp, J. S., McGilvray, R., Barbadillo Muñoz, M. D., Buttery, L. D., Alexander, M. R., Rose, F. R. A. J., & Denning, C. (2010). Biotechnology and Bioengineering, 105(1), 130–140. https://doi.org/10.1002/BIT.22520
Microscopic analysis of the valence band and impurity band theories of (Ga,Mn)As. Mašek, J., MácA, F., Kudrnovský, J., Makarovsky, O., Eaves, L., Campion, R. P., Edmonds, K. W., Rushforth, A. W., Foxon, C. T., Gallagher, B. L., Novák, V., Sinova, J., & Jungwirth, T. (2010). Physical Review Letters, 105(22), 227202–227202. https://doi.org/10.1103/PHYSREVLETT.105.227202
Microstructural characteristics and phonon structures in luminescence from surface oxidized Ge nanocrystals embedded in HfO2 matrix. Das, S., Singha, R. K., Gangopadhyay, S., Dhar, A., & Ray, S. K. (2010). Journal of Applied Physics, 108(5), 53510–53510. https://doi.org/10.1063/1.3475717/345667
Microtextured surfaces with gradient wetting properties. Langley, K. R., & Sharp, J. S. (2010). Langmuir, 26(23), 18349–18356. https://doi.org/10.1021/LA1036212
Nondestructive Raman and atomic force microscopy measurement of molecular structure for individual diphenylalanine nanotubes. Roberts, C. J., Lekprasert, B., Tedler, S. J. B., Sedman, V., & Notingher, I. (2010). Optics Letters, Vol. 35, Issue 24, Pp. 4193-4195, 35(24), 4193–4195. https://doi.org/10.1364/OL.35.004193
Self-assembled aggregates formed by single-molecule magnets on a gold surface. Saywell, A., Magnano, G., Satterley, C. J., Perdigão, L. M. A., Britton, A. J., Taleb, N., Del Carmen Giménez-López, M., Champness, N. R., O’Shea, J. N., & Beton, P. H. (2010). Nature Communications 2010 1:1, 1(1), 1–8. https://doi.org/10.1038/ncomms1075
Solubilized derivatives of perylenetetracarboxylic dianhydride (PTCDA) adsorbed on highly oriented pyrolytic graphite. Russell, J. C., Blunt, M. O., Goretzki, G., Phillips, A. G., Champness, N. R., & Beton, P. H. (2010). Langmuir, 26(6), 3972–3974. https://doi.org/10.1021/LA903335V
Supramolecular Assemblies Formed on an Epitaxial Graphene Superstructure. Pollard, A. J., Perkins, E. W., Smith, N. A., Saywell, A., Goretzki, G., Phillips, A. G., Argent, S. P., Sachdev, H., Müller, F., Hüfner, S., Gsell, S., Fischer, M., Schreck, M., Osterwalder, J., Greber, T., Berner, S., Champness, N. R., Beton, P. H., Pollard, A. J., … Schreck, M. (2010). Angewandte Chemie International Edition, 49(10), 1794–1799. https://doi.org/10.1002/ANIE.200905503
Tailoring pores for guest entrapment in a unimolecular surface self-assembled hydrogen bonded network. Phillips, A. G., Perdigão, L. M. A., Beton, P. H., & Champness, N. R. (2010). Chemical Communications, 46(16), 2775–2777. https://doi.org/10.1039/B926824C
Templating molecular adsorption using a covalent organic framework. Blunt, M. O., Russell, J. C., Champness, N. R., & Beton, P. H. (2010). Chemical Communications, 46(38), 7157–7159. https://doi.org/10.1039/C0CC01810D
Theoretical and experimental comparison of SnPc, PbPc, and CoPc adsorption on Ag(111). Baran, J. D., Larsson, J. A., Woolley, R. A. J., Cong, Y., Moriarty, P. J., Cafolla, A. A., Schulte, K., & Dhanak, V. R. (2010). Physical Review B – Condensed Matter and Materials Physics, 81(7). https://doi.org/10.1103/PHYSREVB.81.075413
Tuning perpendicular magnetic anisotropy in (Ga,Mn)(As,P) by thermal annealing. Casiraghi, A., Rushforth, A. W., Wang, M., Farley, N. R. S., Wadley, P., Hall, J. L., Staddon, C. R., Edmonds, K. W., Campion, R. P., Foxon, C. T., & Gallagher, B. L. (2010). Applied Physics Letters, 97(12), 122504–122504. https://doi.org/10.1063/1.3491841/810395
Valence-state model of strain-dependent MnL2,3 x-ray magnetic circular dichroism from ferromagnetic semiconductors. Van Der Laan, G., Edmonds, K. W., Arenholz, E., Farley, N. R. S., & Gallagher, B. L. (2010). Physical Review B – Condensed Matter and Materials Physics, 81(21), 214422–214422. https://doi.org/10.1103/PHYSREVB.81.214422
Visualization of static Jahn-Teller effects in the fullerene anion C 60 -. Hands, I. D., Dunn, J. L., & Bates, C. A. (2010b). Physical Review B – Condensed Matter and Materials Physics, 82(15). https://doi.org/10.1103/PHYSREVB.82.155425
X-ray absorption and photoemission spectroscopy of zinc protoporphyrin adsorbed on rutile TiO2 (110) prepared by in situ electrospray deposition. Rienzo, A., Mayor, L. C., Magnano, G., Satterley, C. J., Ataman, E., Schnadt, J., Schulte, K., & O’Shea, J. N. (2010). Journal of Chemical Physics, 132(8), 84703–84703. https://doi.org/10.1063/1.3336747/188746
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A low field technique for measuring magnetic and magnetoresistance anisotropy coefficients applied to (Ga,Mn)As. Haigh, J. A., Rushforth, A. W., King, C. S., Edmonds, K. W., Campion, R. P., Foxon, C. T., & Gallagher, B. L. (2009). Applied Physics Letters, 95(23), 232102–232102. https://doi.org/10.1063/1.3268789/120838
Adsorption of a Ru(II) dye complex on the Au(111) surface: Photoemission and scanning tunneling microscopy. Mayor, L. C., Saywell, A., Magnano, G., Satterley, C. J., Schnadt, J., & O’Shea, J. N. (2009). Journal of Chemical Physics, 130(16), 164704–164704. https://doi.org/10.1063/1.3122685/905013
Adsorption of PTCDI on Au(1 1 1): Photoemission and scanning tunnelling microscopy. O’Shea, J. N., Saywell, A., Magnano, G., Perdigão, L. M. A., Satterley, C. J., Beton, P. H., & Dhanak, V. R. (2009). Surface Science, 603(20), 3094–3098. https://doi.org/10.1016/J.SUSC.2009.08.024
C60 submonolayers on the Si(1 1 1)-(7 × 7) surface: Does a mixture of physisorbed and chemisorbed states exist? Gangopadhyay, S., Woolley, R. A. J., Danza, R., Phillips, M. A., Schulte, K., Wang, L., Dhanak, V. R., & Moriarty, P. J. (2009). Surface Science, 603(18), 2896–2901. https://doi.org/10.1016/J.SUSC.2009.07.043
Direct measurement of electrical conductance through a self-assembled molecular layer. Song, F., Wells, J. W., Handrup, K., Li, Z. S., Bao, S. N., Schulte, K., Ahola-Tuomi, M., Mayor, L. C., Swarbrick, J. C., Perkins, E. W., Gammelgaard, L., & Hofmann, P. (2009). Nature Nanotechnology 2009 4:6, 4(6), 373–376. https://doi.org/10.1038/nnano.2009.82
Dynamic scanning probe microscopy of adsorbed molecules on graphite. Berdunov, N., Pollard, A. J., & Beton, P. H. (2009). Applied Physics Letters, 94(4), 43110–43110. https://doi.org/10.1063/1.3075054/337816
Entrapment of decanethiol in a hydrogen-bonded bimolecular template. Perdigão, L. M. A., Staniec, P. A., Champness, N. R., & Beton, P. H. (2009). Langmuir, 25(4), 2278–2281. https://doi.org/10.1021/LA8035314
Formation of monolayer graphene by annealing sacrificial nickel thin films. Pollard, A. J., Nair, R. R., Sabki, S. N., Staddon, C. R., Perdigao, L. M. A., Hsu, C. H., Garfitt, J. M., Gangopadhyay, S., Gleeson, H. F., Geim, A. K., & Beton, P. H. (2009). Journal of Physical Chemistry C, 113(38), 16565–16567. https://doi.org/10.1021/JP906066Z
How Does Graphene Grow? Easy Access to Well-Ordered Graphene Films. Müller, F., Sachdev, H., Hüfner, S., Pollard, A. J., Perkins, E. W., Russell, J. C., Beton, P. H., Gsell, S., Fischer, M., Schreck, M., & Stritzker, B. (2009). Small, 5(20), 2291–2296. https://doi.org/10.1002/SMLL.200900158
Langmuir–Blodgett films of C60 and C60O on Silicon: Islands, rings and grains. Yan, C., Dybek, A., Hanson, C., Schulte, K., Cafolla, A. A., Dennis, J., & Moriarty, P. (2009). Thin Solid Films, 517(5), 1650–1654. https://doi.org/10.1016/J.TSF.2008.10.015
Manipulation of the magnetic configuration of (Ga,Mn)As nanostructures. Haigh, J. A., Wang, M., Rushforth, A. W., Ahmad, E., Edmonds, K. W., Campion, R. P., Foxon, C. T., & Gallagher, B. L. (2009). Applied Physics Letters, 95(6), 62502–62502. https://doi.org/10.1063/1.3200242/338274
Microscopic mechanism of the noncrystalline anisotropic magnetoresistance in (Ga,Mn)As. Výborný, K., Kučera, J., Sinova, J., Rushforth, A. W., Gallagher, B. L., & Jungwirth, T. (2009). Physical Review B – Condensed Matter and Materials Physics, 80(16), 165204–165204. https://doi.org/10.1103/PHYSREVB.80.165204
Modelling approaches to the dewetting of evaporating thin films of nanoparticle suspensions. Thiele, U., Vancea, I., Archer, A. J., Robbins, M. J., Frastia, L., Stannard, A., Pauliac-Vaujour, E., Martin, C. P., Blunt, M. O., & Moriarty, P. J. (2009). Journal of Physics: Condensed Matter, 21(26), 264016–264016. https://doi.org/10.1088/0953-8984/21/26/264016
Molecular random tilings as glasses. Garrahan, J. P., Stannard, A., Blunt, M. O., & Beton, P. H. (2009). Proceedings of the National Academy of Sciences of the United States of America, 106(36), 15209–15213. https://doi.org/10.1073/PNAS.0902443106
Photoemission of Ga1–x Mnx As with high Curie temperature and transformation into MnAs of zincblende structure. Rader, O., Valencia, S., Gudat, W., Edmonds, K. W., Campion, R. P., Gallagher, B. L., Foxon, C. T., Emtsev, K. V., & Seyller, T. (2009). Physica Status Solidi (b), 246(7), 1435–1439. https://doi.org/10.1002/PSSB.200945209
QPlus atomic force microscopy of the Si(100) surface: Buckled, split-off, and added dimers. Sweetman, A., Gangopadhyay, S., Danza, R., Berdunov, N., & Moriarty, P. (2009). Applied Physics Letters, 95(6), 63112–63112. https://doi.org/10.1063/1.3197595/338392
The origin and control of the sources of AMR in (Ga,Mn)As devices. Rushforth, A. W., Výborný, K., King, C. S., Edmonds, K. W., Campion, R. P., Foxon, C. T., Wunderlich, J., Irvine, A. C., Novák, V., Olejník, K., Kovalev, A. A., Sinova, J., Jungwirth, T., & Gallagher, B. L. (2009a). Journal of Magnetism and Magnetic Materials, 321(8), 1001–1008. https://doi.org/10.1016/J.JMMM.2008.04.070
Toward a low-voltage multiferroic transistor: Magnetic (Ga,Mn)As under ferroelectric control. Riester, S. W. E., Stolichnov, I., Trodahl, H. J., Setter, N., Rushforth, A. W., Edmonds, K. W., Campion, R. P., Foxon, C. T., Gallagher, B. L., & Jungwirth, T. (2009). Applied Physics Letters, 94(6). https://doi.org/10.1063/1.3076107/120976
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A compact combined ultrahigh vacuum scanning tunnelling microscope (UHV STM) and near-field optical microscope. Woolley, R. A. J., Hayton, J. A., Cavill, S., Ma, J., Beton, P. H., & Moriarty, P. (2008). Measurement Science and Technology, 19(4), 045301–045301. https://doi.org/10.1088/0957-0233/19/4/045301
Achieving high Curie temperature in (Ga,Mn)As. Wang, M., Campion, R. P., Rushforth, A. W., Edmonds, K. W., Foxon, C. T., & Gallagher, B. L. (2008). Applied Physics Letters, 93(13), 132103–132103. https://doi.org/10.1063/1.2992200/335885
An extensive comparison of anisotropies in MBE grown (Ga,Mn)As material. Gould, C., Mark, S., Pappert, K., Dengel, R. G., Wenisch, J., Campion, R. P., Rushforth, A. W., Chiba, D., Li, Z., Liu, X., Van Roy, W., Ohno, H., Furdyna, J. K., Gallagher, B., Brunner, K., Schmidt, G., & Molenkamp, L. W. (2008). New Journal of Physics, 10(5), 055007–055007. https://doi.org/10.1088/1367-2630/10/5/055007
C 1s photoemission and shake-up features of (C59N)2. Schulte, K., Wang, L., Prassides, K., Tagmatarchis, N., & Moriarty, P. J. (2008). Journal of Physics: Conference Series, 100(7), 072024–072024. https://doi.org/10.1088/1742-6596/100/7/072024
Compositional dependence of ferromagnetism in (Al,Ga,Mn)As magnetic semiconductors. Rushforth, A. W., Farley, N. R. S., Campion, R. P., Edmonds, K. W., Staddon, C. R., Foxon, C. T., Gallagher, B. L., & Yu, K. M. (2008). Physical Review B – Condensed Matter and Materials Physics, 78(8), 085209–085209. https://doi.org/10.1103/PHYSREVB.78.085209
Constrained Molecular Manipulation Mediated by Attractive and Repulsive Tip–Adsorbate Forces. Martsinovich, N., Kantorovich, L., Fawcett, R. H. J., Humphry, M. J., & Beton, P. H. (2008). Small, 4(6), 765–769. https://doi.org/10.1002/SMLL.200700580
Curie point singularity in the temperature derivative of resistivity in (Ga,Mn)As. Novák, V., Olejník, K., Wunderlich, J., Cukr, M., Výborný, K., Rushforth, A. W., Edmonds, K. W., Campion, R. P., Gallagher, B. L., Sinova, J., & Jungwirth, T. (2008). Physical Review Letters, 101(7), 077201–077201. https://doi.org/10.1103/PHYSREVLETT.101.077201
Directing two-dimensional molecular crystallization using guest templates. Blunt, M., Lin, X., Gimenez-Lopez, M. D. C., Schröder, M., Champness, N. R., & Beton, P. H. (2008). Chemical Communications, 20, 2304–2306. https://doi.org/10.1039/B801267A
Domain walls in the (Ga,Mn)as diluted magnetic semiconductor. Sugawara, A., Kasai, H., Tonomura, A., Brown, P. D., Campion, R. P., Edmonds, K. W., Gallagher, B. L., Zemen, J., & Jungwirth, T. (2008). Physical Review Letters, 100(4), 047202–047202. https://doi.org/10.1103/PHYSREVLETT.100.047202
Dual-scale pattern formation in nanoparticle assemblies. Stannard, A., Martin, C. P., Pauliac-Vaujour, E., Moriarty, P., & Thiele, U. (2008). Journal of Physical Chemistry C, 112(39), 15195–15203. https://doi.org/10.1021/JP803399D
Electrospray deposition of C60 on a hydrogen-bonded supramolecular network. Saywell, A., Magnano, G., Satterley, C. J., Perdigão, L. M. A., Champness, N. R., Beton, P. H., & O’Shea, J. N. (2008). Journal of Physical Chemistry C, 112(20), 7706–7709. https://doi.org/10.1021/JP7119944
Encapsulation of cobalt phthalocyanine molecules in carbon nanotubes. Schulte, K., Yan, C., Ahola-Tuomi, M., Strózecka, A., Moriarty, P. J., & Khlobystov, A. N. (2008). Journal of Physics: Conference Series, 100(1), 012017–012017. https://doi.org/10.1088/1742-6596/100/1/012017
Fingering instabilities in dewetting nanofluids. Pauliac-Vaujour, E., Stannard, A., Martin, C. P., Blunt, M. O., Notingher, I., Moriarty, P. J., Vancea, I., & Thiele, U. (2008). Physical Review Letters, 100(17). https://doi.org/10.1103/PHYSREVLETT.100.176102
Formation of an ordered pattern of Bi nanolines on InAs(100) by self-assembly. Ahola-Tuomi, M., Laukkanen, P., Punkkinen, M. P. J., Perälä, R. E., Väyrynen, I. J., Kuzmin, M., Schulte, K., & Pessa, M. (2008). Applied Physics Letters, 92(1), 21–21. https://doi.org/10.1063/1.2831691/913486
Front instabilities in evaporatively dewetting nanofluids. Vancea, I., Thiele, U., Pauliac-Vaujour, E., Stannard, A., Martin, C. P., Blunt, M. O., & Moriarty, P. J. (2008). Physical Review E – Statistical, Nonlinear, and Soft Matter Physics, 78(4). https://doi.org/10.1103/PHYSREVE.78.041601
Functionalized Supramolecular Nanoporous Arrays for Surface Templating. Perdigão, L. M. A., Saywell, A., Fontes, G. N., Staniec, P. A., Goretzki, G., Phillips, A. G., Champness, N. R., & Beton, P. H. (2008). Chemistry – A European Journal, 14(25), 7600–7607. https://doi.org/10.1002/CHEM.200800476
Huge tunnelling anisotropic magnetoresistance in (Ga,Mn)As nanoconstrictions. Giddings, A. D., Makarovsky, O. N., Khalid, M. N., Yasin, S., Edmonds, K. W., Campion, R. P., Wunderlich, J., Jungwirth, T., Williams, D. A., Gallagher, B. L., & Foxon, C. T. (2008). New Journal of Physics, 10(8), 085004–085004. https://doi.org/10.1088/1367-2630/10/8/085004
Insulin fibril nucleation: The role of prefibrillar aggregates. Smith, M. I., Sharp, J. S., & Roberts, C. J. (2008). Biophysical Journal, 95(7), 3400–3406. https://doi.org/10.1529/biophysj.108.131482
Interfacial effects and the glass transition in ultrathin films of poly(tert-butyl methacrylate). Yang, H., & Sharp, J. S. (2008). Macromolecules, 41(13), 4811–4816. https://doi.org/10.1021/MA8001593
Lithographically and electrically controlled strain effects on anisotropic magnetoresistance in (Ga,Mn)As. De Ranieri, E., Rushforth, A. W., Výborný, K., Rana, U., Ahmad, E., Campion, R. P., Foxon, C. T., Gallagher, B. L., Irvine, A. C., Wunderlich, J., & Jungwirth, T. (2008). New Journal of Physics, 10(6), 065003–065003. https://doi.org/10.1088/1367-2630/10/6/065003
Loss of long-range magnetic order in a nanoparticle assembly due to random anisotropy. Binns, C., Howes, P. B., Baker, S. H., Marchetto, H., Potenza, A., Steadman, P., Dhesi, S. S., Roy, M., Everard, M. J., & Rushforth, A. (2008). Journal of Physics: Condensed Matter, 20(5), 055213–055213. https://doi.org/10.1088/0953-8984/20/5/055213
Magnetic properties of sol-gel-derived doped ZnO as a potential ferromagnetic semiconductor: A synchrotron-based study. Farley, N. R. S., Edmonds, K. W., Freeman, A. A., Van Der Laan, G., Staddon, C. R., Gregory, D. H., & Gallagher, B. L. (2008). New Journal of Physics, 10(5), 055012–055012. https://doi.org/10.1088/1367-2630/10/5/055012
Magnetic reversal under external field and current-driven domain wall motion in (Ga,Mn)As: Influence of extrinsic pinning. Wang, K. Y., Irvine, A. C., Wunderlich, J., Edmonds, K. W., Rushforth, A. W., Campion, R. P., Foxon, C. T., Williams, D. A., & Gallagher, B. L. (2008). New Journal of Physics, 10(8), 085007–085007. https://doi.org/10.1088/1367-2630/10/8/085007
Molecular beam epitaxy grown (Ga,Mn)(As,P) with perpendicular to plane magnetic easy axis. Rushforth, A. W., Wang, M., Farley, N. R. S., Campion, R. P., Edmonds, K. W., Staddon, C. R., Foxon, C. T., & Gallagher, B. L. (2008). Journal of Applied Physics, 104(7), 73908–73908. https://doi.org/10.1063/1.2991355/146177
Molecular damage in bi-isonicotinic acid adsorbed on rutile TiO2(1 1 0). O’Shea, J. N., Taylor, J. B., Mayor, L. C., Swarbrick, J. C., & Schnadt, J. (2008). Surface Science, 602(9), 1693–1698. https://doi.org/10.1016/J.SUSC.2008.03.005
Nanoscale Characterisation of MBE-Grown GaMnN/(001) GaAs. Fay, M. W., Han, Y., Novikov, S. V., Edmonds, K. W., Gallagher, B. L., Campion, R. P., Staddon, C. R., Foxon, T., & Brown, P. D. (2008). Microscopy of Semiconducting Materials 2007, 103–106. https://doi.org/10.1007/978-1-4020-8615-1_23
Non-volatile ferroelectric control of ferromagnetism in (Ga,Mn)As. Stolichnov, I., Riester, S. W. E., Trodahl, H. J., Setter, N., Rushforth, A. W., Edmonds, K. W., Campion, R. P., Foxon, C. T., Gallagher, B. L., & Jungwirth, T. (2008). Nature Materials 2008 7:6, 7(6), 464–467. https://doi.org/10.1038/nmat2185
Photoemission, resonant photoemission, and x-ray absorption of a Ru(II) complex adsorbed on rutile TiO2(110) prepared by in situ electrospray deposition. Mayor, L. C., Taylor, J. B., Magnano, G., Rienzo, A., Satterley, C. J., O’Shea, J. N., & Schnadt, J. (2008). Journal of Chemical Physics, 129(11), 114701–114701. https://doi.org/10.1063/1.2975339/296017
Random tiling and topological defects in a two-dimensional molecular network. Blunt, M. O., Russell, J. C., Giménez-López, M. D. C., Garrahan, J. P., Lin, X., Schröder, M., Champness, N. R., & Beton, P. H. (2008). Science, 322(5904), 1077–1081. https://doi.org/10.1126/SCIENCE.1163338
Reclaiming academia from post-academia. Moriarty, P. (2008). Nature Nanotechnology 2008 3:2, 3(2), 60–62. https://doi.org/10.1038/nnano.2008.11
Role of interaction anisotropy in the formation and stability of molecular templates. Weber, U. K., Burlakov, V. M., Perdigão, L. M. A., Fawcett, R. H. J., Beton, P. H., Champness, N. R., Jefferson, J. H., Briggs, G. A. D., & Pettifor, D. G. (2008). Physical Review Letters, 100(15). https://doi.org/10.1103/PHYSREVLETT.100.156101
Strain dependence of the Mn anisotropy in ferromagnetic semiconductors observed by x-ray magnetic circular dichroism. Edmonds, K. W., Van Der Laan, G., Farley, N. R. S., Arenholz, E., Campion, R. P., Foxon, C. T., & Gallagher, B. L. (2008). Physical Review B – Condensed Matter and Materials Physics, 77(11), 113205–113205. https://doi.org/10.1103/PHYSREVB.77.113205
Valence band orbital polarization in III-V ferromagnetic semiconductors. Freeman, A. A., Edmonds, K. W., Van Der Laan, G., Campion, R. P., Rushforth, A. W., Farley, N. R. S., Johal, T. K., Foxon, C. T., Gallagher, B. L., Rogalev, A., & Wilhelm, F. (2008). Physical Review B – Condensed Matter and Materials Physics, 77(7), 073304–073304. https://doi.org/10.1103/PHYSREVB.77.073304
Voltage control of magnetocrystalline anisotropy in ferromagnetic- semiconductor-piezoelectric hybrid structures. Rushforth, A. W., De Ranieri, E., Zemen, J., Wunderlich, J., Edmonds, K. W., King, C. S., Ahmad, E., Campion, R. P., Foxon, C. T., Gallagher, B. L., Výborný, K., Kučera, J., & Jungwirth, T. (2008). Physical Review B – Condensed Matter and Materials Physics, 78(8), 085314–085314. https://doi.org/10.1103/PHYSREVB.78.085314
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Adsorption and charge transfer dynamics of bi-isonicotinic acid on Au(111). Ben Taylor, J., Mayor, L. C., Swarbrick, J. C., O’Shea, J. N., Isvoranu, C., & Schnadt, J. (2007). Journal of Chemical Physics, 127(13), 134707–134707. https://doi.org/10.1063/1.2781510/567088
Anisotropic magnetoresistance components in (Ga,Mn)As. Rushforth, A. W., Výborný, K., King, C. S., Edmonds, K. W., Campion, R. P., Foxon, C. T., Wunderlich, J., Irvine, A. C., Vašek, P., Novák, V., Olejník, K., Sinova, J., Jungwirth, T., & Gallagher, B. L. (2007). Physical Review Letters, 99(14), 147207–147207. https://doi.org/10.1103/PHYSREVLETT.99.147207
Character of states near the Fermi level in (Ga,Mn)As: Impurity to valence band crossover. Jungwirth, T., Sinova, J., MacDonald, A. H., Gallagher, B. L., Novák, V., Edmonds, K. W., Rushforth, A. W., Campion, R. P., Foxon, C. T., Eaves, L., Olejník, E., Mašek, J., Yang, S. R. E., Wunderlich, J., Gould, C., Molenkamp, L. W., Dietl, T., & Ohno, H. (2007). Physical Review B – Condensed Matter and Materials Physics, 76(12), 125206–125206. https://doi.org/10.1103/PHYSREVB.76.125206
Charge transport in cellular nanoparticle networks: Meandering through nanoscale mazes. Blunt, M. O., Šuvakov, M., Pulizzi, F., Martin, C. P., Pauliac-Vaujour, E., Stannard, A., Rushforth, A. W., Tadić, B., & Moriarty, P. (2007). Nano Letters, 7(4), 855–860. https://doi.org/10.1021/NL061656E
Charge-transfer dynamics at model metal—Organic solar cell surfaces. Taylor, J. B., Mayor, L. C., Swarbrick, J. C., O’Shea, J. N., & Schnadt, J. (2007). Journal of Physical Chemistry C, 111(44), 16646–16655. https://doi.org/10.1021/JP075366D
Coadsorbed NTCDI-melamine mixed phases on Ag-Si(111). Perdigão, L. M. A., Fontes, G. N., Rogers, B. L., Oxtoby, N. S., Goretzki, G., Champness, N. R., & Beton, P. H. (2007). Physical Review B – Condensed Matter and Materials Physics, 76(24). https://doi.org/10.1103/PHYSREVB.76.245402
Coercivity enlargement in (Ga,Mn)As thin films with small amount of MnAs nanoclusters. Sawicki, M., Wang, K. Y., Edmonds, K. W., Campion, R. P., Rushforth, A. W., Foxon, C. T., Gallagher, B. L., & Dietl, T. (2007). Journal of Magnetism and Magnetic Materials, 310(2), 2126–2128. https://doi.org/10.1016/J.JMMM.2006.10.934
Depth dependence of the Mn valence and Mn-Mn coupling in (Ga,Mn)N. Freeman, A. A., Edmonds, K. W., Farley, N. R. S., Novikov, S. V., Campion, R. P., Foxon, C. T., Gallagher, B. L., Sarigiannidou, E., & Van Der Laan, G. (2007). Physical Review B – Condensed Matter and Materials Physics, 76(8), 081201–081201. https://doi.org/10.1103/PHYSREVB.76.081201
Domain imaging and domain wall propagation in (Ga, Mn)As thin films with tensile strain. Wang, K. Y., Rushforth, A. W., Grant, V. A., Campion, R. P., Edmonds, K. W., Staddon, C. R., Foxon, C. T., Gallagher, B. L., Wunderlich, J., & Williams, D. A. (2007). Journal of Applied Physics, 101(10), 106101–106101. https://doi.org/10.1063/1.2732406/926090
Electrospray deposition of carbon nanotubes in vacuum. O’Shea, J. N., Taylor, J. B., Swarbrick, J. C., Magnano, G., Mayor, L. C., & Schulte, K. (2007). Nanotechnology, 18(3), 035707–035707. https://doi.org/10.1088/0957-4484/18/3/035707
Electrospray deposition of fullerenes in ultra-high vacuum: In situ scanning tunnelingmicroscopy and photoemission spectroscopy. Satterley, C. J., Perdigão, L. M. A., Saywell, A., Magnano, G., Rienzo, A., Mayor, L. C., Dhanak, V. R., Beton, P. H., & O’Shea, J. N. (2007). Nanotechnology, 18(45), 455304–455304. https://doi.org/10.1088/0957-4484/18/45/455304
Growth front nucleation of rubrene thin films for high mobility organic transistors. Hsu, C. H., Deng, J., Staddon, C. R., & Beton, P. H. (2007). Applied Physics Letters, 91(19), 193505–193505. https://doi.org/10.1063/1.2805030/119057
Hierarchical Organisation on a Two-Dimensional Supramolecular Network. Staniec, P. A., A Perdig, L. M., Saywell, A., Champness, N. R., Beton, P. H., Staniec, P. A., A Perdig, L. M., Saywell, A., Beton, P. H., & Champness, N. R. (2007). ChemPhysChem, 8(15), 2177–2181. https://doi.org/10.1002/CPHC.200700513
Honeycomb Networks and Chiral Superstructures Formed by Cyanuric Acid and Melamine on Au(111). Staniec, P. A., Perdigão, L. M. A., Rogers, B. L., Champness, N. R., & Beton, P. H. (2007). https://doi.org/10.1021/JP064964
Local control of magnetocrystalline anisotropy in (Ga,Mn)As microdevices: Demonstration in current-induced switching. Wunderlich, J., Irvine, A. C., Zemen, J., Holý, V., Rushforth, A. W., De Ranieri, E., Rana, U., Výborný, K., Sinova, J., Foxon, C. T., Campion, R. P., Williams, D. A., Gallagher, B. L., & Jungwirth, T. (2007). Physical Review B – Condensed Matter and Materials Physics, 76(5), 054424–054424. https://doi.org/10.1103/PHYSREVB.76.054424
Measuring the hole chemical potential in ferromagnetic Ga1-x Mnx AsGaAs heterostructures by photoexcited resonant tunneling. Thomas, O., Makarovsky, O., Pataǹ, A., Eaves, L., Campion, R. P., Edmonds, K. W., Foxon, C. T., & Gallagher, B. L. (2007). Applied Physics Letters, 90(8). https://doi.org/10.1063/1.2709624/129029
Microstructural characterization of low-temperature grown GaMnN on GaAs(0 0 1) substrates by plasma-assisted MBE. Han, Y., Fay, M. W., Brown, P. D., Novikov, S. V., Edmonds, K. W., Gallagher, B. L., Campion, R. P., & Foxon, C. T. (2007). Semiconductor Science and Technology, 22(10), 1131–1131. https://doi.org/10.1088/0268-1242/22/10/009
Secondary magnetic phases in (Ga,Mn)As determined by x-ray magnetic circular dichroism. Edmonds, K. W., Freeman, A. A., Farley, N. R. S., Wang, K. Y., Campion, R. P., Gallagher, B. L., Foxon, C. T., Van Der Laan, G., & Arenholz, E. (2007). Journal of Applied Physics, 102(2), 23902–23902. https://doi.org/10.1063/1.2756046/380300
The growth of high quality GaMnAs layers and heterostructures by molecular beam epitaxy. Campion, R. P., Grant, V. A., Edmonds, K. W., Gallagher, B. L., & Foxon, C. T. (2007). Physica Status Solidi (b), 244(8), 2944–2949. https://doi.org/10.1002/PSSB.200675624
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AMR and magnetometry studies of ultra thin GaMnAs films. Rushforth, A. W., Giddings, A. D., Edmonds, K. W., Campion, R. P., Foxon, C. T., & Gallagher, B. L. (2006). Physica Status Solidi c, 3(12), 4078–4081. https://doi.org/10.1002/PSSC.200672836
Angle-dependent X-ray magnetic circular dichroism from (Ga,Mn)As: Anisotropy and identification of hybridized states. Edmonds, K. W., Van Der Laan, G., Freeman, A. A., Farley, N. R. S., Johal, T. K., Campion, R. P., Foxon, C. T., Gallagher, B. L., & Arenholz, E. (2006). Physical Review Letters, 96(11), 117207–117207. https://doi.org/10.1103/PHYSREVLETT.96.117207
Bimolecular networks and supramolecular traps on Au(111). Perdigão, L. M. A., Perking, E. W., Ma, J., Staniec, P. A., Rogers, B. L., Champness, N. R., & Beton, P. H. (2006). Journal of Physical Chemistry B, 110(25), 12539–12542. https://doi.org/10.1021/JP060062X
Characterization of Ga 1− x Mn x As/(001)GaAs epilayers grown by low-temperature molecular beam epitaxy. Fay, M. W., Han, Y., Brown, P. D., Edmonds, K. W., Wang, K., Gallagher, B. L., Campion, R. P., & Foxon, C. T. (2006). Philosophical Magazine Letters, 86(6), 395–401. https://doi.org/10.1080/09500830600847087
Control of coercivities in (Ga,Mn)As thin films by small concentrations of MnAs nanoclusters. Wang, K. Y., Sawicki, M., Edmonds, K. W., Campion, R. P., Rushforth, A. W., Freeman, A. A., Foxon, C. T., Gallagher, B. L., & Dietl, T. (2006). Applied Physics Letters, 88(2), 1–3. https://doi.org/10.1063/1.2162856/921368
Dianhydride-amine hydrogen bonded perylene tetracarboxylic dianhydride and tetraaminobenzene rows. Ma, J., Rogers, B. L., Humphry, M. J., Ring, D. J., Goretzki, G., Champness, N. R., & Beton, P. H. (2006). Journal of Physical Chemistry B, 110(25), 12207–12210. https://doi.org/10.1021/JP057304Y
Electrospray deposition in vacuum. Swarbrick, J. C., Taylor, J. B., & O’Shea, J. N. (2006). Applied Surface Science, 252(15), 5622–5626. https://doi.org/10.1016/J.APSUSC.2005.12.025
Experimental and theoretical identification of adenine monolayers on Ag-terminated Si(111). Perdigão, L. M. A., Staniec, P. A., Champness, N. R., Kelly, R. E. A., Kantorovich, L. N., & Beton, P. H. (2006). Physical Review B – Condensed Matter and Materials Physics, 73(19). https://doi.org/10.1103/PHYSREVB.73.195423
Fano effect and Kondo effect in quantum dots formed in strongly coupled quantum wells. Rushforth, A. W., Smith, C. G., Farrer, I., Ritchie, D. A., Jones, G. A. C., Anderson, D., & Pepper, M. (2006). Physical Review B – Condensed Matter and Materials Physics, 73(8), 081305–081305. https://doi.org/10.1103/PHYSREVB.73.081305
Ferromagnetic nanodevices based on (Ga,Mn)As. Edmonds, K. W. (2006). Current Opinion in Solid State and Materials Science, 10(2), 108–113. https://doi.org/10.1016/J.COSSMS.2006.11.005
Giant anisotropy in x-ray magnetic linear dichroism in (Ga,Mn)As. Freeman, A. A., Edmonds, K. W., Van Der Laan, G., Farley, N. R. S., Johal, T. K., Arenholz, E., Campion, R. P., Foxon, C. T., & Gallagher, B. L. (2006). Physical Review B – Condensed Matter and Materials Physics, 73(23), 233303–233303. https://doi.org/10.1103/PHYSREVB.73.233303
Hydrogen-bonded PTCDA-melamine networks and mixed phases. Swarbrick, J. C., Rogers, B. L., Champness, N. R., & Beton, P. H. (2006). Journal of Physical Chemistry B, 110(12), 6110–6114. https://doi.org/10.1021/JP056517K
Kinetic instabilities in the growth of one dimensional molecular nanostructures. Taylor, J. B., & Beton, P. H. (2006). Physical Review Letters, 97(23). https://doi.org/10.1103/PHYSREVLETT.97.236102
Lateral translation of covalently bound fullerenes. Humphry, M. J., Beton, P. H., Keeling, D. L., Fawcett, R. H. J., Moriarty, P., Butcher, M. J., Birkett, P. R., Walton, D. R. M., Taylor, R., & Kroto, H. W. (2006). Journal of Physics: Condensed Matter, 18(33), S1837–S1837. https://doi.org/10.1088/0953-8984/18/33/S05
Local structure around Mn atoms in cubic (Ga,Mn)N thin films probed by fluorescence extended x-ray absorption fine structure. He, B., Zhang, X., Wei, S., Oyanagi, H., Novikov, S. V., Edmonds, K. W., Foxon, C. T., Zhou, G., & Jia, Y. (2006). Applied Physics Letters, 88(5), 1–3. https://doi.org/10.1063/1.2168228/327939
Low-temperature magnetization of (Ga,Mn)As semiconductors. Jungwirth, T., Mašek, J., Wang, K. Y., Edmonds, K. W., Sawicki, M., Polini, M., Sinova, J., MacDonald, A. H., Campion, R. P., Zhao, L. X., Farley, N. R. S., Johal, T. K., Van Der Laan, G., Foxon, C. T., & Gallagher, B. L. (2006). Physical Review B – Condensed Matter and Materials Physics, 73(16), 165205–165205. https://doi.org/10.1103/PHYSREVB.73.165205
Magnetic domain structure and magnetization reversal in (311)B Ga 0.91Mn0.09As films. Pross, A., Bending, S. J., Wang, K. Y., Edmonds, K. W., Campion, R. P., Foxon, C. T., Gallagher, B. L., & Sawicki, M. (2006). Journal of Applied Physics, 99(9), 93908–93908. https://doi.org/10.1063/1.2199975/294228
Manipulation of C60 on the Si(001) surface: Experiment and theory. Martsinovich, N., Hobbs, C., Kantorovich, L., Fawcett, R. H. J., Humphry, M. J., Keeling, D. L., & Beton, P. H. (2006). Physical Review B – Condensed Matter and Materials Physics, 74(8). https://doi.org/10.1103/PHYSREVB.74.085304
Prospects for high temperature ferromagnetism in (Ga,Mn)As semiconductors. Sinova, J., Jungwirth, T., Masek, J., Goncharuk, N. A., Wang, K. Y., Edmonds, K. W., Rushforth, A. W., Campion, R. P., Zhao, L. X., Foxon, C. T., Gallagher, B. L., MacDonald, A. H., Polini, M., Sawicki, M., & Koenig, J. (2006). APS, G19.001-G19.001.
Surface self-assembly of the cyanuric acid–melamine hydrogen bonded network. Perdigão, L. M. A., Champness, N. R., & Beton, P. H. (2006). Chemical Communications, 5, 538–540. https://doi.org/10.1039/B514389F
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Anisotropic magnetoresistance and magnetic anisotropy in high-quality (Ga,Mn)As films. Wang, K. Y., Edmonds, K. W., Campion, R. P., Zhao, L. X., Foxon, C. T., & Gallagher, B. L. (2005). Physical Review B – Condensed Matter and Materials Physics, 72(8), 085201–085201. https://doi.org/10.1103/PHYSREVB.72.085201
Bond breaking coupled with translation in rolling of covalently bound molecules. Keeling, D. L., Humphry, M. J., Fawcett, R. H. J., Beton, P. H., Hobbs, C., & Kantorovich, L. (2005). Physical Review Letters, 94(14). https://doi.org/10.1103/PHYSREVLETT.94.146104
Bulk and surface charge states of K3 C60. Schiessling, J., Kjeldgaard, L., Käämbre, T., Marenne, I., O’Shea, J. N., Schnadt, J., Glover, C. J., Nagasono, M., Nordlund, D., Garnier, M. G., Qian, L., Rubensson, J. E., Rudolf, P., Mårtensson, N., Nordgren, J., & Brühwiler, P. A. (2005). Physical Review B – Condensed Matter and Materials Physics, 71(16). https://doi.org/10.1103/PHYSREVB.71.165420
(C6H5)5C60H at Si(111) (7×7) and Ag:Si(111) (3×3)R30deg; surfaces. Phillips, M. A., O’Shea, J. N., Birkett, P. R., Purton, J., Kroto, H. W., Walton, D. R. M., Taylor, R., & Moriarty, P. (2005). Physical Review B – Condensed Matter and Materials Physics, 72(7), 075426–075426. https://doi.org/10.1103/PHYSREVB.72.075426
Determination of the Mn concentration in GaMnAs. Zhao, L. X., Campion, R. P., Fewster, P. F., Martin, R. W., Ber, B. Y., Kovarsky, A. P., Staddon, C. R., Wang, K. Y., Edmonds, K. W., Foxon, C. T., & Gallagher, B. L. (2005). Semiconductor Science and Technology, 20(5), 369–369. https://doi.org/10.1088/0268-1242/20/5/008
Electrical characterisation of (Ga,Mn,Cr)As thin films grown by molecular beam epitaxy. Ibáñez, J., Edmonds, K. W., Henini, M., Eaves, L., Pastor, D., Cuscó, R., Artús, L., & Akinaga, H. (2005). Journal of Crystal Growth, 278(1–4), 695–698. https://doi.org/10.1016/J.JCRYSGRO.2004.12.093
Evidence for a finite compressibility of a quasi-one-dimensional ballistic channel. Liang, C. T., Kataoka, M., Faini, G., Mailly, D., Simmons, M. Y., Rushforth, A. W., Smith, C. G., Ritchie, D. A., & Pepper, M. (2005). Microelectronics Journal, 36(3–6), 331–333. https://doi.org/10.1016/J.MEJO.2005.02.110
Ferromagnetic moment and antiferromagnetic coupling in (Ga,Mn)As thin films. Edmonds, K. W., Farley, N. R. S., Johal, T. K., Van Der Laan, G., Campion, R. P., Gallagher, B. L., & Foxon, C. T. (2005). Physical Review B – Condensed Matter and Materials Physics, 71(6), 064418–064418. https://doi.org/10.1103/PHYSREVB.71.064418
(Ga,Mn)As grown on (311) GaAs substrates: Modified Mn incorporation and magnetic anisotropies. Wang, K. Y., Edmonds, K. W., Zhao, L. X., Sawicki, M., Campion, R. P., Gallagher, B. L., & Foxon, C. T. (2005). Physical Review B – Condensed Matter and Materials Physics, 72(11), 115207–115207. https://doi.org/10.1103/PHYSREVB.72.115207
Growth induced reordering of fullerene clusters trapped in a two-dimensional supramolecular network. Theobald, J. A., Oxtoby, N. S., Champness, N. R., Beton, P. H., & Dennis, T. J. S. (2005). Langmuir, 21(5), 2038–2041. https://doi.org/10.1021/LA047533W
In-plane uniaxial anisotropy rotations in (Ga,Mn)As thin films. Sawicki, M., Wang, K. Y., Edmonds, K. W., Campion, R. P., Staddon, C. R., Farley, N. R. S., Foxon, C. T., Papis, E., Kamiñska, E., Piotrowska, A., Dietl, T., & Gallagher, B. L. (2005). Physical Review B – Condensed Matter and Materials Physics, 71(12), 121302–121302. https://doi.org/10.1103/PHYSREVB.71.121302
Intrinsic and extrinsic contributions to the lattice parameter of GaMnAs. Zhao, L. X., Staddon, C. R., Wang, K. Y., Edmonds, K. W., Campion, R. P., Gallagher, B. L., & Foxon, C. T. (2005). Applied Physics Letters, 86(7), 1–3. https://doi.org/10.1063/1.1864238/237763
Large tunneling anisotropic magnetoresistance in (Ga,Mn)as nanoconstrictions. Giddings, A. D., Khalid, M. N., Jungwirth, T., Wunderlich, J., Yasin, S., Campion, R. P., Edmonds, K. W., Sinova, J., Ito, K., Wang, K. Y., Williams, D., Gallagher, B. L., & Foxon, C. T. (2005). Physical Review Letters, 94(12), 127202–127202. https://doi.org/10.1103/PHYSREVLETT.94.127202
Mn doping and p-type conductivity in zinc-blende GaMnN layers grown by molecular beam epitaxy. Novikov, S. V., Edmonds, ; K W, Zhao, ; L X, Giddings, ; A D, Wang, ; K Y, Campion, ; R P, Staddon, ; C R, Fay, ; M W, Han, ; Y, Brown, ; P D, Sawicki, ; M, Gallagher, ; B L, Foxon, ; C T, Edmonds, K. W., Zhao, L. X., Giddings, A. D., Wang, K. Y., Campion, R. P., Staddon, C. R., … Foxon, C. T. (2005). Journal of Vacuum Science & Technology B: Microelectronics and Nanometer Structures Processing, Measurement, and Phenomena, 23(3), 1294–1298. https://doi.org/10.1116/1.1868699
Molecular beam epitaxy of p-type cubic GaMnN layers. Foxon, C. T., Novikov, S. V., Zhao, L. X., Edmonds, K. W., Giddings, A. D., Wang, K. Y., Campion, R. P., Staddon, C. R., Fay, M. W., Han, Y., Brown, P. D., Sawicki, M., & Gallagher, B. L. (2005). Journal of Crystal Growth, 278(1–4), 685–689. https://doi.org/10.1016/J.JCRYSGRO.2004.12.112
Molecular orbitals tell the story. O’Shea, J. N. (2005). Science, 310(5747), 453–454. https://doi.org/10.1126/SCIENCE.1119274
Phase and molecular orientation in metal-free phthalocyanine films on conducting glass: Characterization of two deposition methods. Alfredsson, Y., Åhlund, J., Nilson, K., Kjeldgaard, L., O’Shea, J. N., Theobald, J., Bao, Z., Mårtensson, N., Sandell, A., Puglia, C., & Siegbahn, H. (2005). Thin Solid Films, 493(1–2), 13–19. https://doi.org/10.1016/J.TSF.2005.05.012
Photoelectron spectroscopy study of Ga1−xMnxAs(0 0 1) surface oxide and low temperature cleaning. Hatfield, S. A., Veal, T. D., McConville, C. F., Bell, G. R., Edmonds, K. W., Campion, R. P., Foxon, C. T., & Gallagher, B. L. (2005). Surface Science, 585(1–2), 66–74. https://doi.org/10.1016/J.SUSC.2005.04.012
Prospects for high temperature ferromagnetism in (Ga,Mn)As semiconductors. Jungwirth, T., Wang, K. Y., Mašek, J., Edmonds, K. W., König, J., Sinova, J., Polini, M., Goncharuk, N. A., MacDonald, A. H., Sawicki, M., Rushforth, A. W., Campion, R. P., Zhao, L. X., Foxon, C. T., & Gallagher, B. L. (2005). Physical Review B – Condensed Matter and Materials Physics, 72(16), 165204–165204. https://doi.org/10.1103/PHYSREVB.72.165204
P-type conductivity in cubic (Ga,Mn)N thin films. Edmonds, K. W., Novikov, S. V., Sawicki, M., Campion, R. P., Staddon, C. R., Giddings, A. D., Zhao, L. X., Wang, K. Y., Dietl, T., Foxon, C. T., & Gallagher, B. L. (2005). Applied Physics Letters, 86(15), 1–3. https://doi.org/10.1063/1.1900924/899192
Spin reorientation transition in single-domain (Ga,Mn)as. Wang, K. Y., Sawicki, M., Edmonds, K. W., Campion, R. P., Maat, S., Foxon, C. T., Gallagher, B. L., & Dietl, T. (2005). Physical Review Letters, 95(21), 217204–217204. https://doi.org/10.1103/PHYSREVLETT.95.217204
Square, hexagonal, and row phases of PTCDA and PTCDI on Ag-Si(111)√3 × √3R30°. Swarbrick, J. C., Ma, J., Theobald, J. A., Oxtoby, N. S., O’Shea, J. N., Champness, N. R., & Beton, P. H. (2005a). Journal of Physical Chemistry B, 109(24), 12167–12174. https://doi.org/10.1021/JP0508305
Structural characterisation of zinc-blende Ga1−xMnxN epilayers grown by MBE as a function of Ga flux. Han, Y., Fay, M. W., Brown, P. D., Novikov, S. V., Edmonds, K. W., Gallagher, B. L., Campion, R. P., Staddon, C. R., & Foxon, C. T. (2005). Journal of Crystal Growth, 284(3–4), 324–334. https://doi.org/10.1016/J.JCRYSGRO.2005.07.015
Time-resolved light scattering studies of phase separation in thin film semiconducting polymer blends during spin-coating. Jukes, P. C., Heriot, S. Y., Sharp, J. S., & Jones, R. A. L. (2005). Macromolecules, 38(6), 2030–2032. https://doi.org/10.1021/MA0477145
Variable temperature magnetic force microscopy with piezoelectric quartz tuning forks as probes optimized using Q -control. Callaghan, F. D., Yu, X., & Mellor, C. J. (2005). Applied Physics Letters, 87(21), 1–3. https://doi.org/10.1063/1.2132525/328386
Well-shielded cerium atoms: Electronic structure of adsorbed Ce@C 82 on Si surfaces. Schulte, K., Wang, L., Moriarty, P. J., Purton, J., Patel, S., Shinohara, H., Kanai, M., & Dennis, T. J. S. (2005). Physical Review B – Condensed Matter and Materials Physics, 71(11). https://doi.org/10.1103/PHYSREVB.71.115437
XSW feasibility study of C60Ph5–OH on Ag(1 1 1): Combining hard X-rays, low Z and, low coverage. Schulte, K., Woolley, R. A. J., Wang, L., Moriarty, P. J., Birkett, P. R., Kroto, H. W., & Cowie, B. C. C. (2005). Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, 547(1), 208–215. https://doi.org/10.1016/J.NIMA.2005.05.026
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Anisotropic magnetoresistance in a two-dimensional electron gas in a quasirandom magnetic field. Rushforth, A. W., Gallagher, B. L., Main, P. C., Neumann, A. C., Henini, M., Marrows, C. H., & Mickey, B. J. (2004). Physical Review B – Condensed Matter and Materials Physics, 70(19), 1–4. https://doi.org/10.1103/PHYSREVB.70.193313
Comment on “X-Ray Studies of the Structure and Electronic Behavior of Alkanethiolate-Capped Gold Nanoparticles: The Interplay of Size and Surface Effects”. Moriarty, P., Zhang, P., & Sham, T. K. (2004). Physical Review Letters, 92(10). https://doi.org/10.1103/PhysRevLett.92.109601
Does an Encapsulated Atom ‘feel’ the Effects of Adsorption?: X-ray Standing Wave Spectroscopy of Ce@C82 on Ag(111). Woolley, R. A. J., Schulte, K. H. G., Wang, L., Moriarty, P. J., Cowie, B. C. C., Shinohara, H., Kanai, M., & Dennis, T. J. S. (2004). Nano Letters, 4(2), 361–364. https://doi.org/10.1021/NL035041I
Effect of sample preparation on the glass-transition of thin polystyrene films. Fakhraai, Z., Sharp, J. S., & Forrest, J. A. (2004). Journal of Polymer Science Part B: Polymer Physics, 42(24), 4503–4507. https://doi.org/10.1002/POLB.20281
Growth induced reordering of fullerene clusters trapped in a two-dimensional supramolecular network. Theobald, J. A., Oxtoby, N. S., Champness, N. R., Beton, P. H., & Dennis, T. J. S. (2005). Langmuir, 21(5), 2038–2041. https://doi.org/10.1021/LA047533W
Influence of low temperature annealing on the micromagnetic structure of GaMnAs films. Pross, A., Bending, S., Edmonds, K., Campion, R. P., Foxon, C. T., & Gallagher, B. (2004a). Journal of Applied Physics, 95(6), 3225–3227. https://doi.org/10.1063/1.1643197
Influence of the Mn interstitial on the magnetic and transport properties of (Ga,Mn)As. Wang, K. Y., Edmonds, K. W., Campion, R. P., Gallagher, B. L., Farley, N. R. S., Foxon, C. T., Sawicki, M., Boguslawski, P., & Dietl, T. (2004). Journal of Applied Physics, 95(11), 6512–6514. https://doi.org/10.1063/1.1669337
Insulating surface layer on single crystal K $\mathsf{_{3}}\mathsf{C}\mathsf{_{60}}$. Schiessling, J., Kjeldgaard, L., Käämbre, T., Marenne, I., Qian, L., O’Shea, J. N., Schnadt, J., Garnier, M. G., Nordlund, D., Nagasono, M., Glover, C. J., Rubensson, J. E., Mårtensson, N., Rudolf, P., Nordgren, J., & Brühwiler, P. A. (2004). The European Physical Journal B – Condensed Matter and Complex Systems 2004 41:4, 41(4), 435–438. https://doi.org/10.1140/EPJB/E2004-00335-2
Magnetic domain imaging of ferromagnetic GaMnAs films. Pross, A., Bending, S., Edmonds, K., Campion, R. P., Foxon, C. T., & Gallagher, B. (2004b). Journal of Applied Physics, 95(11), 7399–7401. https://doi.org/10.1063/1.1669113
Mn Interstitial Diffusion in (Ga, Mn)As. Edmonds, K. W., Bogusławski, P., Wang, K. Y., Campion, R. P., Novikov, S. N., Farley, N. R. S., Gallagher, B. L., Foxon, C. T., Sawicki, M., Dietl, T., Buongiorno Nardelli, M., & Bernholc, J. (2004). Physical Review Letters, 92(3), 4–4. https://doi.org/10.1103/PHYSREVLETT.92.037201
Mn L3,2 x-ray absorption from (Ga,Mn)As and (Ga,Mn)N. Edmonds, K. W., Farley, N. R. S., Johal, T. K., Campion, R. P., Gallagher, B. L., Foxon, C. T., & Van Der Laan, G. (2004). Journal of Applied Physics, 95(11), 7166–7168. https://doi.org/10.1063/1.1667419
Molecular ordering in isonicotinic acid on rutile TiO2(110) investigated with valence band photoemission. O’Shea, J. N., Swarbrick, J. C., Nilson, K., Puglia, C., Brena, B., Luo, Y., & Dhanak, V. R. (2004). The Journal of Chemical Physics, 121(20), 10203–10208. https://doi.org/10.1063/1.1802292
Morphology, structure, and electronic properties of Ce@C82 films on Ag:Si(1 1 1)-(√3 × √3)R30°. Wang, L., Schulte, K., Woolley, R. A. J., Kanai, M., Dennis, T. J. S., Purton, J., Patel, S., Gorovikov, S., Dhanak, V. R., Smith, E. F., Cowie, B. C. C., & Moriarty, P. (2004). Surface Science, 564(1–3), 156–164. https://doi.org/10.1016/J.SUSC.2004.06.189
Nanoparticle networks on silicon: Self-organized or disorganized? Martin, C. P., Blunt, M. O., & Moriarty, P. (2004). Nano Letters, 4(12), 2389–2392. https://doi.org/10.1021/NL048536W
Nanopore formation by self-assembly of the model genetically engineered elastin-like polymer [(VPGVG)2(VPGEG)(VPGVG)2] 15. Reguera, J., Fahmi, A., Moriarty, P., Girotti, A., & Rodríguez-Cabello, J. C. (2004). Journal of the American Chemical Society, 126(41), 13212–13213. https://doi.org/10.1021/JA047417F
Noninvasive detection of the evolution of the charge states of a double dot system. Rushforth, A. W., Smith, C. G., Godfrey, M. D., Beere, H. E., Ritchie, D. A., & Pepper, M. (2004a). Physical Review B, 69(11), 113309–113309. https://doi.org/10.1103/PhysRevB.69.113309
Non-invasive detection of the ionic and covalent charge states of an isolated double dot system. Rushforth, A. W., Smith, C. G., Godfrey, M. D., Beere, H. E., Ritchie, D. A., & Pepper, M. (2004b). Physica E: Low-Dimensional Systems and Nanostructures, 22(1–3), 522–525. https://doi.org/10.1016/J.PHYSE.2003.12.060
Sol-gel formation of ordered nanostructured doped ZnO films. Farley, N. R. S., Staddon, C. R., Zhao, L., Edmonds, K. W., Gallagher, B. L., & Gregory, D. H. (2004). Journal of Materials Chemistry, 14(7), 1087–1092. https://doi.org/10.1039/B313271D
Surface effects in Mn L3,2 x-ray absorption spectra from (Ga,Mn)As. Edmonds, K. W., Farley, N. R. S., Campion, R. P., Foxon, C. T., Gallagher, B. L., Johal, T. K., Van Der Laan, G., MacKenzie, M., Chapman, J. N., & Arenholz, E. (2004). Applied Physics Letters, 84(20), 4065–4067. https://doi.org/10.1063/1.1751619
The growth of high quality GaMnAs films by MBE. Foxon, C. T., Campion, R. P., Edmonds, K. W., Zhao, L., Wang, K., Farley, N. R. S., Staddon, C. R., & Gallagher, B. L. (2004). Journal of Materials Science: Materials in Electronics, 15(11), 727–731. https://doi.org/10.1023/B:JMSE.0000043420.48864.07
X-ray photoelectron spectroscopy of fluorescein adsorbed on model solar-cell surfaces. O’Shea, J. N., Taylor, J. B., & Smith, E. F. (2004). Surface Science, 548(1–3), 317–323. https://doi.org/10.1016/J.SUSC.2003.11.019
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Adsorption and manipulation of endohedral and higher fullerenes on Si(100)−2×1. Butcher, M. J., Nolan, J. W., Hunt, M. R. C., Beton, P. H., Dunsch, L., Kuran, P., Georgi, P., & Dennis, T. J. S. (2003). Physical Review B, 67(12). https://doi.org/10.1103/PhysRevB.67.125413
Alignment of valence photoemission, x-ray absorption, and substrate density of states for an adsorbate on a semiconductor surface. Schnadt, J., O’Shea, J. N., Patthey, L., Krempaský, J., Mårtensson, N., & Brühwiler, P. A. (2003). Physical Review B, 67(23), 235420–235420. https://doi.org/10.1103/PhysRevB.67.235420
Assembly and processing of hydrogen bond induced supramolecular nanostructures. Keeling, D. L., Oxtoby, N. S., Wilson, C., Humphry, M. J., Champness, N. R., & Beton, P. H. (2003). Nano Letters, 3(1), 9–12. https://doi.org/10.1021/nl025821b
Competing interactions of noble metals and fullerenes with the Si(111)7×7 surface. O’Shea, J. N., Phillips, M. A., Taylor, M. D. R., Beton, P. H., Moriarty, P., Kanai, M., Dennis, T. J. S., Dhanak, V. R., Patel, S., & Poolton, N. (2003). The Journal of Chemical Physics, 119(24), 13046–13052. https://doi.org/10.1063/1.1628225
Controlling molecular deposition and layer structure with supramolecular surface assemblies. Theobald, J. A., Oxtoby, N. S., Phillips, M. A., Champness, N. R., & Beton, P. H. (2003). Nature 2003 424:6952, 424(6952), 1029–1031. https://doi.org/10.1038/nature01915
Dc-transport properties of ferromagnetic (Ga,Mn)As semiconductors. Jungwirth, T., Sinova, J., Wang, K. Y., Edmonds, K. W., Campion, R. P., Gallagher, B. L., Foxon, C. T., Niu, Q., & MacDonald, A. H. (2003). Applied Physics Letters, 83(2), 320–322. https://doi.org/10.1063/1.1590433
Empirical density functional and the adsorption of organic molecules on Si(100). Gill, P. M. W., Moriarty, P., Phillips, M. A., & Besley, N. A. (2003). Physical Review B, 67(3). https://doi.org/10.1103/PhysRevB.67.035309
Excited-state charge transfer dynamics in systems of aromatic adsorbates on TiO2 studied with resonant core techniques. Schnadt, J., O’shea, ; J N, Patthey, ; L, Kjeldgaard, ; L, Åhlund, ; J, Nilson, ; K, Schiessling, ; J, Krempaský, ; J, Shi, ; M, Karis, ; O, Glover, ; C, Siegbahn, ; H, Mårtensson, ; N, Brühwiler, P. A., O’shea, J. N., Patthey, L., Kjeldgaard, L., Nilson, K., Schiessling, J., … Brü, P. A. (2003). The Journal of Chemical Physics, 119(23), 12462–12472. https://doi.org/10.1063/1.1586692
Fractal-compact island transition and self-limiting growth of pentacene on polymers. Luo, Y., Wang, G., Theobald, J. A., & Beton, P. H. (2003). Surface Science, 537(1–3), 241–246. https://doi.org/10.1016/S0039-6028(03)00605-8
Free surfaces cause reductions in the glass transition temperature of thin polystyrene films. Sharp, J. S., & Forrest, J. A. (2003). Physical Review Letters, 91(23). https://doi.org/10.1103/PHYSREVLETT.91.235701
Graphical computing in the undergraduate laboratory: Teaching and interfacing with LabVIEW. Moriarty, P. J., Gallagher, B. L., Mellor, C. J., & Baines, R. R. (2003). American Journal of Physics, 71(10), 1062–1074. https://doi.org/10.1119/1.1582189
High mobility organic transistors fabricated from single pentacene microcrystals grown on a polymer film. Wang, G., Luo, Y., & Beton, P. H. (2003). Applied Physics Letters, 83(15), 3108–3110. https://doi.org/10.1063/1.1617375
High-quality GaMnAs films grown with arsenic dimers. Campion, R. P., Edmonds, K. W., Zhao, L. X., Wang, K. Y., Foxon, C. T., Gallagher, B. L., & Staddon, C. R. (2003a). Journal of Crystal Growth, 247(1–2), 42–48. https://doi.org/10.1016/S0022-0248(02)01939-5
Magnetoresistance and Hall effect in the ferromagnetic semiconductor Ga1−xMnxAs. Edmonds, K. W., Campion, R. P., Wang, K. Y., Neumann, A. C., Gallagher, B. L., Foxon, C. T., & Main, P. C. (2003). Journal of Applied Physics, 93(10), 6787–6789. https://doi.org/10.1063/1.1556110
P-type conductivity in cubic GaMnN layers grown by molecular beam epitaxy. Novikov, S. V., Edmonds, K. W., Giddings, A. D., Wang, K. Y., Staddon, C. R., Campion, R. P., Gallagher, B. L., & Foxon, C. T. (2003). Semiconductor Science and Technology, 19(3), L13–L13. https://doi.org/10.1088/0268-1242/19/3/L02
Realization of quantum-dot cellular automata using semiconductor quantum dots. Smith, C. G., Gardelis, S., Rushforth, A. W., Crook, R., Cooper, J., Ritchie, D. A., Linfield, E. H., Jin, Y., & Pepper, M. (2003). Superlattices and Microstructures, 34(3–6), 195–203. https://doi.org/10.1016/J.SPMI.2004.03.009
Structural study of adsorption of isonicotinic acid and related molecules on rutile TiO2(1 1 0) I: XAS and STM. Schnadt, J., Schiessling, J., O’Shea, J. N., Gray, S. M., Patthey, L., Johansson, M. K. J., Shi, M., Krempaský, J., Åhlund, J., Karlsson, P. G., Persson, P., Mårtensson, N., & Brühwiler, P. A. (2003). Surface Science, 540(1), 39–54. https://doi.org/10.1016/S0039-6028(03)00827-6
The growth of GaMnAs films by molecular beam epitaxy using arsenic dimers. Campion, R. P., Edmonds, K. W., Zhao, L. X., Wang, K. Y., Foxon, C. T., Gallagher, B. L., & Staddon, C. R. (2003b). Journal of Crystal Growth, 251(1–4), 311–316. https://doi.org/10.1016/S0022-0248(02)02291-1
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Anisotropic Magnetoresistance in GaMnAs films. Wang, K. Y., Edmonds, K. W., Campion, R. P., Zhao, L. X., Neumann, A. C., Foxon, C. T., Gallagher, B. L., Main, P. C., & Marrows, C. H. (2002). https://arxiv.org/abs/cond-mat/0211697v1
Attractive mode manipulation of covalently bound molecules. Keeling, D. L., Humphry, M. J., Moriarty, P., & Beton, P. H. (2002). Chemical Physics Letters, 366(3–4), 300–304. https://doi.org/10.1016/S0009-2614(02)01588-9
Colloidal particle foams: Templates for Au nanowire networks? O’Shea, J. N., Phillips, M. A., Taylor, M. D. R., Moriarty, P., Brust, M., & Dhanak, V. R. (2002). Applied Physics Letters, 81(26), 5039–5041. https://doi.org/10.1063/1.1526924
Even-odd transition in the Shubnikov–de Haas oscillations in a two-dimensional electron gas subjected to periodic magnetic and electric modulations. Shi, J., Peeters, F. M., Edmonds, K. W., & Gallagher, B. L. (2002). Physical Review B, 66(3), 035328–035328. https://doi.org/10.1103/PhysRevB.66.035328
Experimental evidence for sub-3-fs charge transfer from an aromatic adsorbate to a semiconductor. Schnadt, J., Brühwiler, P. A., Patthey, L., O’Shea, J. N., Södergren, S., Odelius, M., Ahuja, R., Karis, O., Bässler, M., Persson, P., Slegbahn, H., Lunell, S., & Mårtensson, N. (2002). Nature 2002 418:6898, 418(6898), 620–623. https://doi.org/10.1038/nature00952
Hall effect and hole densities in Ga1−xMnxAs. Edmonds, K. W., Wang, K. Y., Campion, R. P., Neumann, A. C., Foxon, C. T., Gallagher, B. L., & Main, P. C. (2002). Applied Physics Letters, 81(16), 3010–3012. https://doi.org/10.1063/1.1512822
High-Curie-temperature Ga1−xMnxAs obtained by resistance-monitored annealing. Edmonds, K. W., Wang, K. Y., Campion, R. P., Neumann, A. C., Farley, N. R. S., Gallagher, B. L., & Foxon, C. T. (2002). Applied Physics Letters, 81(26), 4991–4993. https://doi.org/10.1063/1.1529079
Magnetism in exposed and coated nanoclusters studied by dichroism in X-ray absorption and photoemission. Binns, C., Baker, S. H., Edmonds, K. W., Finetti, P., Maher, M. J., Louch, S. C., Dhesi, S. S., & Brookes, N. B. (2002). Physica B: Condensed Matter, 318(4), 350–359. https://doi.org/10.1016/S0921-4526(02)00804-9
Magnetism in Fe Nanoclusters-From Isolated Particles to Nanostructured Materials. Binns, C., Baker, S. H., Maher, M. J., Louch, S., Thornton, S. C., Edmonds, K. W., Dhesi, S. S., & Brookes, N. B. (n.d.). https://doi.org/10.1002/1521-396X
Magnetoresistance oscillations in a periodic magnetic field due to internal Landau band structure. Edmonds, K. W., Gallagher, B. L., Main, P. C., Nogaret, A., Henini, M., Marrows, C. H., & Macintyre, D. S. (2002). Physica E: Low-Dimensional Systems and Nanostructures, 12(1–4), 212–215. https://doi.org/10.1016/S1386-9477(01)00328-9
Nanostructured Cellular Networks. Moriarty, P., Taylor, M. D. R., & Brust, M. (2002). Physical Review Letters, 89(24). https://doi.org/10.1103/PHYSREVLETT.89.248303
Quasi-ballistic transport of 2D electrons through magnetic barriers. Hong, J., Kubrak, V., Edmonds, K. W., Neumann, A. C., Gallagher, B. L., Main, P. C., Henini, M., Marrows, C. H., Hickey, B. J., & Thoms, S. (2002). Physica E: Low-Dimensional Systems and Nanostructures, 12(1–4), 229–232. https://doi.org/10.1016/S1386-9477(01)00344-7
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Atomic scale protection using fullerene encapsulation. Cotier, B. N., Upward, M. D., Jones, F. H., Moriarty, P., & Beton, P. H. (2001). Applied Physics Letters, 78(1), 126–128. https://doi.org/10.1063/1.1336553
Beamline-induced chromium structure in carbon K-edge absorption spectra. Schnadt, J., Schiessling, J., O’Shea, J. N., Patthey, L., Shi, M., Puglia, C., Mårtensson, N., & Brühwiler, P. A. (2001). Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms, 184(4), 609–614. https://doi.org/10.1016/S0168-583X(01)00796-0
Electrical transport of 2D electrons in non-uniform magnetic fields. Gallagher, B. L., Kubrak, V., Rushforth, A. W., Neumann, A. C., Edmonds, K. W., Main, P. C., Henini, M., Marrows, C. H., Hickey, B. J., & Thoms, S. (2001). Physica E: Low-Dimensional Systems and Nanostructures, 11(2–3), 171–176. https://doi.org/10.1016/S1386-9477(01)00197-7
Magnetic force microscopy studies of the domain structure of Co/Pd multilayers in a magnetic field. Rushforth, A. W., Main, P. C., Gallagher, B. L., Marrows, C. H., Hickey, B. J., Dahlberg, E. D., & Eames, P. (2001). Journal of Applied Physics, 89(11), 7534–7536. https://doi.org/10.1063/1.1359792
Nanostructured materials. Moriarty, P. (2001). Reports on Progress in Physics, 64(3), 297–297. https://doi.org/10.1088/0034-4885/64/3/201
Orientationally ordered island growth of higher fullerenes on Ag/Si(111)−(3×3)R30°<. Butcher, M. J., Nolan, J. W., Hunt, M. R. C., Beton, P. H., Dunsch, L., Kuran, P., Georgi, P., & Dennis, T. J. S. (2001). Physical Review B, 64(19). https://doi.org/10.1103/PhysRevB.64.195401
Polydisperse Au nanoclusters on silicon: Fractal aggregates via spinodal decomposition? Taylor, M. D. R., Moriarty, P., & Brust, M. (2001). Chemical Physics Letters, 348(1–2), 27–33. https://doi.org/10.1016/S0009-2614(01)01055-7
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Chemisorption of azafullerene on silicon: Isolating C59N monomers. Butcher, M. J., Jones, F. H., Cotier, B. N., Taylor, M. D. R., Moriarty, P., Beton, P. H., Prassides, K., Tagmatarchis, N., Comicioli, C., Ottaviani, C., & Crotti, C. (2000). Materials Science and Engineering: B, 74(1–3), 202–205. https://doi.org/10.1016/S0921-5107(99)00562-0
Deposition of Fe clusters on Si surfaces. Upward, M. D., Cotier, ; B N, Moriarty, ; P, Beton, ; P H, Baker, S. H., Binns, ; C, Edmonds, ; K, Cotier, B. N., Moriarty, P., Beton, P. H., Binns, C., & Edmonds, K. (2000). Journal of Vacuum Science & Technology B: Microelectronics and Nanometer Structures Processing, Measurement, and Phenomena, 18(6), 2646–2649. https://doi.org/10.1116/1.1320808
Digital scanning probe microscope controller for molecular manipulation applications. Humphry, M. J., Chettle, R., Moriarty, P. J., Upward, M. D., & Beton, P. H. (2000). Review of Scientific Instruments, 71(4), 1698–1701. https://doi.org/10.1063/1.1150522
Doping of covalently bound fullerene monolayers: Ag clusters on C60/Si(111). Taylor, M. D. R., Moriarty, P., Cotier, B. N., Butcher, M. J., Beton, P. H., & Dhanak, V. R. (2000). Applied Physics Letters, 77(8), 1144–1146. https://doi.org/10.1063/1.1289797
Growth and modification of Ag islands on hydrogen terminated Si(100) surfaces. Butcher, M. J., Jones, F. H., & Beton, P. H. (2000). Journal of Vacuum Science & Technology B: Microelectronics and Nanometer Structures Processing, Measurement, and Phenomena, 18(1), 13–15. https://doi.org/10.1116/1.591142
N 1s x-ray absorption study of the bonding interaction of bi-isonicotinic acid adsorbed on rutile TiO 2 (110). Persson, P., Lunell, S., Brühwiler, P. A., Schnadt, J., Södergren, S., O’shea, J. N., Karis, O., Siegbahn, H., Mårtensson, N., Bässler, M., Patthey, L., Brü Hwiler, P. A., Sö, S., Må, N., & Bä, M. (2000). J. Chem. Phys, 112, 3945–3948. https://doi.org/10.1063/1.480945
The transport of 2D electrons through magnetic barriers. Kubrak, V., Rushforth, A. W., Neumann, A. C., Rahman, F., Gallagher, B. L., Main, P. C., Henini, M., Marrows, C. H., & Hickey, B. J. (2000). Physica E: Low-Dimensional Systems and Nanostructures, 7(3–4), 997–1000. https://doi.org/10.1016/S1386-9477(00)00103-X
Transport properties of a two-dimensional electron gas due to a spatially random magnetic field. Rushforth, A. W., Gallagher, B. L., Main, P. C., Neumann, A. C., Marrows, C. H., Zoller, I., Howson, M. A., Hickey, B. J., & Henini, M. (2000). Physica E: Low-Dimensional Systems and Nanostructures, 6(1–4), 751–754. https://doi.org/10.1016/S1386-9477(99)00195-2
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Adsorption of cobalt phthalocyanine on Ag terminated Si(111). Upward, M. D., Beton, P. H., & Moriarty, P. (1999). Surface Science, 441(1), 21–25. https://doi.org/10.1016/S0039-6028(99)00778-5
C59N Monomers: Stabilization through Immobilization. Butcher, M. J., Jones, F. H., Beton, P. H., Moriarty, P., Cotier, B. N., Upward, M. D., Prassides, K., Kordatos, K., Tagmatarchis, N., Wudl, F., Dhanak, V., Johal, T. K., Crotti, C., Comicioli, C., & Ottaviani, C. (1999). Physical Review Letters, 83(17), 3478–3481. https://doi.org/10.1103/PhysRevLett.83.3478
Effects on the resonant tunneling characteristics of a double-barrier diode of intentional and unintentional dopings in the quantum well. Sakai, J. W., Beton, P. H., Eaves, L., Main, P. C., & Henini, M. (1999). Journal of Applied Physics, 86(3), 1452–1455. https://doi.org/10.1063/1.370911
Oscillations in the valence-band photoemission spectrum of the heterofullerene C59N: A photoelectron interference phenomenon. Jones, F. H., Butcher, M. J., Cotier, B. N., Moriarty, P., Beton, P. H., Dhanak, V. R., Prassides, K., Kordatos, K., Tagmatarchis, N., & Wudl, F. (1999). Physical Review B, 59(15), 9834–9837. https://doi.org/10.1103/PhysRevB.59.9834
Room temperature manipulation of the heterofullerene C59N on Si(100)-2×1. Butcher, M. J., Jones, F. H., Moriarty, P., Beton, P. H., Prassides, K., Kordatos, K., & Tagmatarchis, N. (1999). Applied Physics Letters, 75(8), 1074–1076. https://doi.org/10.1063/1.124601
1998 |
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A self-assembled InAs quantum dot used as a quantum microscope looking into a two-dimensional electron gas. Ihn, T., Thornton, A., Itskevich, I. E., Beton, P. H., Martin, P., Moriarty, P., Müller, E., Nogaret, A., Main, P. C., Eaves, L., & Henini, M. (1998). Physics-Uspekhi, 41(2), 122–122. https://doi.org/10.1070/PU1998V041N02ABEH000342
C60 adsorption on the Si(110)-(16 × 2) surface. Ma, Y. R., Moriarty, P., Upward, M. D., & Beton, P. H. (1998). Surface Science, 397(1–3), 421–425. https://doi.org/10.1016/S0039-6028(97)00716-4
C60-terminated Si surfaces: Charge transfer, bonding, and chemical passivation. Moriarty, P., Upward, M., Dunn, A., Ma, Y., Beton, P., & Teehan, D. (1998). Physical Review B, 57(1), 362–369. https://doi.org/10.1103/PhysRevB.57.362
Functionalized fullerenes on silicon surfaces. Upward, M. D., Moriarty, P., Beton, P. H., Birkett, P. R., Kroto, H. W., Walton, D. R. M., & Taylor, R. (1998). Surface Science, 405(2–3), L526–L531. https://doi.org/10.1016/S0039-6028(98)00144-7
Optical anisotropy in arrow-shaped InAs quantum dots. Henini, M., Sanguinetti, S., Fortina, S., Grilli, E., & Guzzi, M. (1998). Physical Review B, 57(12), R6815–R6818. https://doi.org/10.1103/PhysRevB.57.R6815
Probing the interactions of on Si(100)- using anisotropic molecular manipulation. Moriarty, P., Ma, Y. R., Upward, M. D., Beton, P. H., & Teehan, D. (1998). Semiconductor Science and Technology, 13(8A), A47–A47. https://doi.org/10.1088/0268-1242/13/8A/016
Reconstruction dependent adsorption of C60 on GaAs(111)B. Moriarty, P., Upward, M. D., Ma, Y. R., Dunn, A. W., Beton, P. H., Teehan, D., & Woolf, D. A. (1998). Surface Science, 405(1), 21–26. https://doi.org/10.1016/S0039-6028(97)01074-1
Translation, rotation and removal of C60 on Si(100)-2 × 1 using anisotropic molecular manipulation. Moriarty, P., Ma, Y. R., Upward, M. D., & Beton, P. H. (1998). Surface Science, 407(1–3), 27–35. https://doi.org/10.1016/S0039-6028(98)00082-X
1997 |
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Absence of long-range ordered reconstruction on the GaAs(311)A surface. Moriarty, P., Ma, Y., Dunn, A., Beton, P., Henini, M., McGinley, C., McLoughlin, E., Cafolla, A., & Hughes, G. (1997). Physical Review B, 55(23), 15397–15400. https://doi.org/10.1103/PhysRevB.55.15397
Disorder-Order Ripening of C60 Islands. Ma, Y. R., Moriarty, P., & Beton, P. H. (1997). Physical Review Letters, 78(13), 2588–2591. https://doi.org/10.1103/PhysRevLett.78.2588
Double domain ordering and selective removal of C60 on Ag/Si. Upward, M., Moriarty, P., & Beton, P. (1997). Physical Review B, 56(4), R1704–R1707. https://doi.org/10.1103/PhysRevB.56.R1704
Investigation and Manipulation of C60 on a Si Surface Using a Scanning Tunneling Microscope. Moriarty, P., Dunn, A. W., Ma, Y. R., Upward, M. D., & Beton, P. H. (1997). Fullerenes, Nanotubes, and Carbon Nanostructures, 5(4), 769–780. https://doi.org/10.1080/15363839708012230
MBE growth and magnetotunnelling transport properties of a single GaAs/AlAs/GaAs barrier incorporating InAs quantum dots. Henini, M., Itskevich, I. E., Ihn, T., Moriarty, P., Nogaret, A., Beton, P. H., Eaves, L., Main, P. C., Middleton, J. R., & Chauhan, J. S. (1997). Journal of Crystal Growth, 175–176(PART 2), 782–786. https://doi.org/10.1016/S0022-0248(96)01035-4
Measurement and manipulation of Mn clusters on clean and fullerene terminated Si(111)-7×7. Upward, M. D., Moriarty, P., Beton, P. H., Baker, S. H., Binns, C., & Edmonds, K. (1997). Applied Physics Letters, 70(16), 2114–2116. https://doi.org/10.1063/1.118965
Molecular scale alignment strategies: An investigation of Ag adsorption on patterned fullerene layers. Dunn, A. W., Cotier, B. N., Nogaret, A., Moriarty, P., Beton, P. H., & Beaumont, S. P. (1997). Applied Physics Letters, 71(20), 2937–2939. https://doi.org/10.1063/1.120221
Nanometer scale patterning of C60 multilayers using molecular manipulation. Dunn, A. W., Moriarty, P., Beton, P. H., & Phys Lett, A. (1997). Journal of Vacuum Science & Technology A, 15(3), 1478–1481. https://doi.org/10.1116/1.580565
Resonant magnetotunneling through individual self-assembled InAs quantum dots. Thornton, A., Itskevich, I. E., Ihn, T., Henini, M., Moriarty, P., Nogaret, A., Beton, P. H., Eaves, L., Main, P. C., Middleton, J. R., & Heath, M. (1997). Superlattices and Microstructures, 21(2), 255–258. https://doi.org/10.1006/SPMI.1996.0192
Structural and optical characterization of self-assembled InAs-GaAs quantum dots grown on high index surfaces. Henini, M., Sanguinetti, S., Brusaferri, L., Grilli, E., Guzzi, M., Upward, M. D., Moriarty, P., & Beton, P. H. (1997). Microelectronics Journal, 28(8–10), 933–938. https://doi.org/10.1016/S0026-2692(96)00132-2
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(2×4)/c(2×8) to (4×2)/c(8×2) transition on GaAs(001) surfaces. Moriarty, P., Beton, ; P H, Ma, Y.-R., Dunn, ; A W, Henini, ; M, Woolf, D. A., Beton, P. H., Dunn, A. W., & Henini, M. (1996). Journal of Vacuum Science & Technology B: Microelectronics and Nanometer Structures Processing, Measurement, and Phenomena, 14(2), 943–947. https://doi.org/10.1116/1.589180
Adsorbed and substituted Sb dimers on GaAs(001). Moriarty, P., Beton, P. H., Ma, Y. R., Henini, M., & Woolf, D. A. (1996). Physical Review B, 53(24). https://doi.org/10.1103/PhysRevB.53.R16148
C60 manipulation and cluster formation using a scanning tunneling microscope. Dunn, A. W., Beton, ; P H, Moriarty, ; P, Beton, P. H., & Moriarty, P. (1996). Journal of Vacuum Science & Technology B: Microelectronics and Nanometer Structures Processing, Measurement, and Phenomena, 14(3), 1596–1599. https://doi.org/10.1116/1.589197
Creation and annihilation of positively and negatively charged excitions in GaAs quantum wells. Buhmann, H., Beton, P. H., Eaves, L., & Henini, M. (1996). Surface Science, 361–362, 447–450. https://doi.org/10.1016/0039-6028(96)00442-6
Fabrication of Si nanostructures by controlled sidewall oxidation. Beton, P. H., Blackburn, A., Neves, B. R. A., & Robbins, D. J. (1996). Solid-State Electronics, 40(1–8), 265–269. https://doi.org/10.1016/0038-1101(95)00262-6
Island, trimer, and chain formation on the Sb‐terminated GaAs(111)B surface. Moriarty, P., Beton, P. H., Henini, M., Woolf, D. A., Appl Phys, J., & Chem Phys, J. (1996). Journal of Vacuum Science & Technology B: Microelectronics and Nanometer Structures Processing, Measurement, and Phenomena, 14(2), 1024–1028. https://doi.org/10.1116/1.588447
Passivation of Si(111)‐7×7 by a C60 monolayer. Dunn, A. W., Moriarty, P., Upward, M. D., & Beton, P. H. (1996). Applied Physics Letters, 69(4), 506–508. https://doi.org/10.1063/1.117768
Resonant magnetotunneling through individual self-assembled InAs quantum dots. Itskevich, I., Ihn, T., Thornton, A., Henini, M., Foster, T., Moriarty, P., Nogaret, A., Beton, P., Eaves, L., & Main, P. (1996). Physical Review B, 54(23), 16401–16404. https://doi.org/10.1103/PhysRevB.54.16401
Room temperature manipulation of C60 molecules on a Si surface. Beton, P. H., Dunn, A. W., & Moriarty, P. (1996). Surface Science, 361–362, 878–881. https://doi.org/10.1016/0039-6028(96)00555-9
Sb-induced GaAs(111)B surface reconstructions: Success and failure of the electron-counting rule. Moriarty, P., Beton, P. H., Henini, M., & Woolf, D. A. (1996). Surface Science, 365(3), L663–L668. https://doi.org/10.1016/0039-6028(96)00884-9
STM investigation and manipulation of molecules adsorbed on an Si(111) surface. Dunn, A. W., Moriarty, P., Upward, M. D., Nogaret, A., & Beton, P. H. (1996). Semiconductor Science and Technology, 11(11S), 1563–1563. https://doi.org/10.1088/0268-1242/11/11S/019
1995 |
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A novel approach in fabrication and study of laterally quantum-confined resonant tunnelling diodes. Wang, J., Beton, P. H., Mori, N., Eaves, L., Main, P. C., Foster, T. J., & Henini, M. (1995). Materials Science and Engineering: B, 35(1–3), 192–197. https://doi.org/10.1016/0921-5107(95)01367-9
Atomic scale modifications of GaAs using a scanning tunneling microscope. Moriarty, P., Beton, P. H., & Woolf, D. A. (1995a). Applied Physics Letters, 66(12), 1515–1517. https://doi.org/10.1063/1.113631
Cretion and annihilation of negatively charged excitons in GaAs quantum wells. Buhmann, H., Beton, P. H., Eaves, L., & Henini, M. (1995). Il Nuovo Cimento D, 17(11–12), 1395–1400. https://doi.org/10.1007/BF02457216
Double chain structures on the Sb-terminated GaAs(111)B surface. Moriarty, P., Beton, P. H., & Woolf, D. A. (1995b). Physical Review B, 51(12), 7950–7953. https://doi.org/10.1103/PhysRevB.51.7950
Effect of a parallel magnetic field on the resonant-tunneling current through a quantum wire. Mori, N., Beton, P. H., Wang, J., & Eaves, L. (1995a). Physical Review B, 52(3), 1504–1507. https://doi.org/10.1103/PhysRevB.52.1504
Electron-concentration-dependent quantum-well luminescence: Evidence for a negatively charged exciton. Buhmann, H., Mansouri, L., Wang, J., Beton, P. H., Mori, N., Eaves, L., Henini, M., & Potemski, M. (1995). Physical Review B, 51(12), 7969–7972. https://doi.org/10.1103/PhysRevB.51.7969
Landau-level populations and slow energy relaxation of a two-dimensional electron gas probed by tunneling spectroscopy. Neves, B. R. A., Mori, N., Beton, P. H., Eaves, L., Wang, J., & Henini, M. (1995). Physical Review B, 52(7), 4666–4669. https://doi.org/10.1103/PhysRevB.52.4666
Manipulation of C60 molecules on a Si surface. Beton, P. H., Dunn, A. W., & Moriarty, P. (1995). Applied Physics Letters, 67(8), 1075–1077. https://doi.org/10.1063/1.114469
Measuring the Probability Density of Quantum Confined States. Beton, P. H., Wang, J., Mori, N., Eaves, L., Main, P. C., Foster, T. J., & Henini, M. (1995a). Physical Review Letters, 75(10), 1996–1999. https://doi.org/10.1103/PhysRevLett.75.1996
Resonant magnetotunneling via quantum confined states. Beton, P. H., Wang, J., Mori, N., Eaves, L., Buhmann, H., Mansouri, L., Main, P. C., Foster, T. J., & Henini, M. (1995b). Physica B: Condensed Matter, 211(1–4), 423–429. https://doi.org/10.1016/0921-4526(94)01084-E
Resonant tunnelling through a single impurity in high magnetic fields: Probing a two-dimensional electron gas on a nanometre scale. McDonnell, P. J., Geim, A. K., Main, P. C., Foster, T. J., Beton, P. H., & Eaves, L. (1995). Physica B: Condensed Matter, 211(1–4), 433–436. https://doi.org/10.1016/0921-4526(94)01086-G
Theory of resonant tunneling through a quantum wire. Mori, N., Beton, P. H., Wang, J., & Eaves, L. (1995b). Physical Review B, 51(3), 1735–1742. https://doi.org/10.1103/PhysRevB.51.1735
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