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Multiferroics: progress and prospects in thin films R Ramesh, NA Spaldin Nature materials 6 (1), 21-29, 2007 | 4675 | 2007 |
Multiferroic batio3-cofe2o4 nanostructures H Zheng, J Wang, SE Lofland, Z Ma, L Mohaddes-Ardabili, T Zhao, ... Science 303 (5658), 661-663, 2004 | 2615 | 2004 |
Above-bandgap voltages from ferroelectric photovoltaic devices SY Yang, J Seidel, SJ Byrnes, P Shafer, CH Yang, MD Rossell, P Yu, ... Nature nanotechnology 5 (2), 143-147, 2010 | 1798 | 2010 |
Direct evidence for a half-metallic ferromagnet JH Park, E Vescovo, HJ Kim, C Kwon, R Ramesh, T Venkatesan Nature 392 (6678), 794-796, 1998 | 1683 | 1998 |
Electric-field control of local ferromagnetism using a magnetoelectric multiferroic YH Chu, LW Martin, MB Holcomb, M Gajek, SJ Han, Q He, N Balke, ... Nature materials 7 (6), 478-482, 2008 | 1649 | 2008 |
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Advances in magnetoelectric multiferroics NA Spaldin, R Ramesh Nature materials 18 (3), 203-212, 2019 | 1535 | 2019 |
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Domain wall nanoelectronics G Catalan, J Seidel, R Ramesh, JF Scott Reviews of Modern Physics 84 (1), 119-156, 2012 | 1315 | 2012 |
Lead-free halide perovskite solar cells with high photocurrents realized through vacancy modulation. MH Kumar, S Dharani, WL Leong, PP Boix, RR Prabhakar, T Baikie, C Shi, ... Advanced Materials (Deerfield Beach, Fla.) 26 (41), 7122-7127, 2014 | 1208 | 2014 |
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Reversible electric control of exchange bias in a multiferroic field-effect device SM Wu, SA Cybart, P Yu, MD Rossell, JX Zhang, R Ramesh, RC Dynes Nature materials 9 (9), 756-761, 2010 | 818 | 2010 |