Linearly polarized emission from colloidal semiconductor quantum rods J Hu, L Li, W Yang, L Manna, L Wang, AP Alivisatos Science 292 (5524), 2060-2063, 2001 | 1538 | 2001 |
Colloidal nanocrystal heterostructures with linear and branched topology DJ Milliron, SM Hughes, Y Cui, L Manna, J Li, LW Wang, A Paul Alivisatos Nature 430 (6996), 190-195, 2004 | 1404 | 2004 |
Atomically thin two-dimensional organic-inorganic hybrid perovskites L Dou, AB Wong, Y Yu, M Lai, N Kornienko, SW Eaton, A Fu, CG Bischak, ... Science 349 (6255), 1518-1521, 2015 | 1314 | 2015 |
High Defect Tolerance in Lead Halide Perovskite CsPbBr3 J Kang, LW Wang The journal of physical chemistry letters 8 (2), 489-493, 2017 | 1093 | 2017 |
Lasing in robust cesium lead halide perovskite nanowires SW Eaton, M Lai, NA Gibson, AB Wong, L Dou, J Ma, LW Wang, ... Proceedings of the National Academy of Sciences 113 (8), 1993-1998, 2016 | 772 | 2016 |
Thermodynamic oxidation and reduction potentials of photocatalytic semiconductors in aqueous solution S Chen, LW Wang Chemistry of Materials 24 (18), 3659-3666, 2012 | 772 | 2012 |
Spontaneous superlattice formation in nanorods through partial cation exchange RD Robinson, B Sadtler, DO Demchenko, CK Erdonmez, LW Wang, ... Science 317 (5836), 355-358, 2007 | 768 | 2007 |
Polymers with tailored electronic structure for high capacity lithium battery electrodes G Liu, S Xun, N Vukmirovic, X Song, P Olalde‐Velasco, H Zheng, ... Advanced materials 23 (40), 4679-4683, 2011 | 612 | 2011 |
Solving Schrödinger’s equation around a desired energy: Application to silicon quantum dots LW Wang, A Zunger The Journal of Chemical Physics 100 (3), 2394-2397, 1994 | 602 | 1994 |
Pseudopotential calculations of nanoscale CdSe quantum dots LW Wang, A Zunger Physical Review B 53 (15), 9579, 1996 | 597 | 1996 |
Comparison of two methods for describing the strain profiles in quantum dots C Pryor, J Kim, LW Wang, AJ Williamson, A Zunger Journal of Applied Physics 83 (5), 2548-2554, 1998 | 566 | 1998 |
Electronic structure pseudopotential calculations of large (. apprx. 1000 atoms) si quantum dots LW Wang, A Zunger The Journal of Physical Chemistry 98 (8), 2158-2165, 1994 | 557 | 1994 |
Break-up of stepped platinum catalyst surfaces by high CO coverage F Tao, S Dag, LW Wang, Z Liu, DR Butcher, H Bluhm, M Salmeron, ... Science 327 (5967), 850-853, 2010 | 539 | 2010 |
Hydroxylation of the surface of PbS nanocrystals passivated with oleic acid D Zherebetskyy, M Scheele, Y Zhang, N Bronstein, C Thompson, D Britt, ... Science 344 (6190), 1380-1384, 2014 | 520 | 2014 |
Design Principles for Trap-Free CsPbX3 Nanocrystals: Enumerating and Eliminating Surface Halide Vacancies with Softer Lewis Bases DP Nenon, K Pressler, J Kang, BA Koscher, JH Olshansky, WT Osowiecki, ... Journal of the American Chemical Society 140 (50), 17760-17772, 2018 | 514 | 2018 |
Optical properties of ZnO/ZnS and ZnO/ZnTe heterostructures for photovoltaic applications J Schrier, DO Demchenko, LW Wang, AP Alivisatos Nano letters 7 (8), 2377-2382, 2007 | 494 | 2007 |
Facet development during platinum nanocube growth HG Liao, D Zherebetskyy, H Xin, C Czarnik, P Ercius, H Elmlund, M Pan, ... science 345 (6199), 916-919, 2014 | 490 | 2014 |
Theoretical interpretation of the experimental electronic structure of lens-shaped self-assembled InAs/GaAs quantum dots AJ Williamson, LW Wang, A Zunger Physical Review B 62 (19), 12963, 2000 | 483 | 2000 |
Two-versus three-dimensional quantum confinement in indium phosphide wires and dots H Yu, J Li, RA Loomis, LW Wang, WE Buhro Nature materials 2 (8), 517-520, 2003 | 476 | 2003 |
Dielectric constants of silicon quantum dots LW Wang, A Zunger Physical Review Letters 73 (7), 1039, 1994 | 451 | 1994 |