Study of the electrochemical deposition of Mg in the atomic level: Why it prefers the non-dendritic morphology C Ling, D Banerjee, M Matsui Electrochimica Acta 76, 270-274, 2012 | 315 | 2012 |
Enhanced field emission of ZnO nanowires D Banerjee, SH Jo, ZF Ren Advanced Materials 16 (22), 2028-2032, 2004 | 306 | 2004 |
Large-quantity free-standing ZnO nanowires D Banerjee, JY Lao, DZ Wang, JY Huang, ZF Ren, D Steeves, B Kimball, ... Applied Physics Letters 83 (10), 2061-2063, 2003 | 259 | 2003 |
Field emission of zinc oxide nanowires grown on carbon cloth SH Jo, D Banerjee, ZF Ren Applied Physics Letters 85 (8), 1407-1409, 2004 | 250 | 2004 |
Unsupervised discovery of solid-state lithium ion conductors Y Zhang, X He, Z Chen, Q Bai, AM Nolan, CA Roberts, D Banerjee, ... Nature communications 10 (1), 5260, 2019 | 217 | 2019 |
Tuning thermal conductivity in molybdenum disulfide by electrochemical intercalation G Zhu, J Liu, Q Zheng, R Zhang, D Li, D Banerjee, DG Cahill Nature communications 7 (1), 13211, 2016 | 189 | 2016 |
Formation of crystallized titania nanotubes and their transformation into nanowires B Poudel, WZ Wang, C Dames, JY Huang, S Kunwar, DZ Wang, ... Nanotechnology 16 (9), 1935, 2005 | 186 | 2005 |
Synthesis and photoluminescence studies on ZnO nanowires D Banerjee, JY Lao, DZ Wang, JY Huang, D Steeves, B Kimball, ZF Ren Nanotechnology 15 (3), 404, 2004 | 148 | 2004 |
Spray-layer-by-layer assembly can more rapidly produce optical-quality multistack heterostructures GM Nogueira, D Banerjee, RE Cohen, MF Rubner Langmuir 27 (12), 7860-7867, 2011 | 106 | 2011 |
Formation of super arrays of periodic nanoparticles and aligned ZnO nanorods− Simulation and experiments J Rybczynski, D Banerjee, A Kosiorek, M Giersig, ZF Ren Nano letters 4 (10), 2037-2040, 2004 | 100 | 2004 |
First-principles study of the magnesiation of olivines: redox reaction mechanism, electrochemical and thermodynamic properties C Ling, D Banerjee, W Song, M Zhang, M Matsui Journal of Materials Chemistry 22 (27), 13517-13523, 2012 | 93 | 2012 |
Structural color via layer-by-layer deposition: layered nanoparticle arrays with near-UV and visible reflectivity bands P Kurt, D Banerjee, RE Cohen, MF Rubner Journal of Materials Chemistry 19 (47), 8920-8927, 2009 | 89 | 2009 |
Large hexagonal arrays of aligned ZnO nanorods D Banerjee, J Rybczynski, JY Huang, DZ Wang, K Kempa, ZF Ren Applied Physics A 80, 749-752, 2005 | 69 | 2005 |
Narrow band omnidirectional reflectors and their use as structural colors D Banerjee, M Zhang, M Ishii US Patent 7,903,339, 2011 | 66 | 2011 |
Metal oxide nanostructures with hierarchical morphology Z Ren, JY Lao, D Banerjee US Patent 7,294,417, 2007 | 66 | 2007 |
Multi-layer photonic structures having omni-directional reflectivity and coatings incorporating the same D Banerjee, BA Grayson, M Zhang, M Ishii US Patent 8,861,087, 2014 | 60 | 2014 |
UV-reflective structural color P Kurt, D Banerjee, RE Cohen, M Rubner, M Ishii, M Zhang US Patent 8,446,666, 2013 | 55 | 2013 |
Angular‐and polarization‐independent structural colors based on 1D photonic crystals KT Lee, C Ji, D Banerjee, LJ Guo Laser & Photonics Reviews 9 (3), 354-362, 2015 | 52 | 2015 |
Structural colors having UV reflectance via spray layer-by-layer processing GM Nogueira, D Banerjee, MF Rubner, RE Cohen US Patent 8,313,798, 2012 | 46 | 2012 |
Apparatuses and methods for making an object appear transparent D Banerjee, H Iizuka US Patent 9,971,162, 2018 | 45 | 2018 |