Zobrazeno 1 - 10
of 22
pro vyhledávání: '"Robert B, Wexler"'
Autor:
Kamal Choudhary, Daniel Wines, Kangming Li, Kevin F. Garrity, Vishu Gupta, Aldo H. Romero, Jaron T. Krogel, Kayahan Saritas, Addis Fuhr, Panchapakesan Ganesh, Paul R. C. Kent, Keqiang Yan, Yuchao Lin, Shuiwang Ji, Ben Blaiszik, Patrick Reiser, Pascal Friederich, Ankit Agrawal, Pratyush Tiwary, Eric Beyerle, Peter Minch, Trevor David Rhone, Ichiro Takeuchi, Robert B. Wexler, Arun Mannodi-Kanakkithodi, Elif Ertekin, Avanish Mishra, Nithin Mathew, Mitchell Wood, Andrew Dale Rohskopf, Jason Hattrick-Simpers, Shih-Han Wang, Luke E. K. Achenie, Hongliang Xin, Maureen Williams, Adam J. Biacchi, Francesca Tavazza
Publikováno v:
npj Computational Materials, Vol 10, Iss 1, Pp 1-17 (2024)
Abstract Lack of rigorous reproducibility and validation are significant hurdles for scientific development across many fields. Materials science, in particular, encompasses a variety of experimental and theoretical approaches that require careful be
Externí odkaz:
https://doaj.org/article/dd95e89a6ffb48b6b7fe3dd56910340f
Publikováno v:
Solar Fuels. :1-63
Publikováno v:
ACS Catalysis. 13:4611-4621
Publikováno v:
The Journal of Physical Chemistry C. 127:5931-5940
Autor:
Robert B. Wexler, Gopalakrishnan Sai Gautam, Robert T. Bell, Sarah Shulda, Nicholas A. Strange, Jamie A. Trindell, Joshua D. Sugar, Eli Nygren, Sami Sainio, Anthony H. McDaniel, David Ginley, Emily A. Carter, Ellen B. Stechel
Publikováno v:
Energy & Environmental Science.
Ca2/3Ce1/3Ti1/3Mn2/3O3 demonstrates promising two-step thermochemical H2 production potential. Quantum-based modeling highlights A-site Ce4+ reduction as the key factor in its redox activity, providing insights for further performance optimization.
Publikováno v:
ACS Catalysis. 11:11706-11715
Publikováno v:
Journal of Materials Chemistry A. 9:9882-9897
Kesterite solar cells, based on the prototypical absorber material Cu2ZnSnS4 (CZTS), are cheap, nontoxic, and chemically stable, thus rendering them promising, beyond-Si photovoltaic technologies. Their efficiencies, however, are limited by the forma
Autor:
Young-Woon Kim, Jinwoo Park, Richard H. Friend, Tae-Woo Lee, Andrew M. Rappe, Satyawan Nagane, Young-Hoon Kim, Hengxing Xu, Jaehyeok Park, Gyeong Su Park, Aditya Sadhanala, Seung Hyeon Jo, Laura Martínez-Sarti, Yong Hee Lee, Robert B. Wexler, Sung-Jin Kim, Bin Hu, Dong Hyeok Kim, Seunghyup Yoo, Henk J. Bolink, Arvin Kakekhani, Peng Tan
Publikováno v:
Nature Photonics
Kim, Y. H. Kim, S. Kakekhani, A. Park, J. Park, J. Lee, Y. H. Xu, H. Nagane, S. Wexler, R. B. Kim, D. H. Hyeon Jo, S. Martínez Sarti, Laura Tan, P. Sadhanala, A. Park, G. S. Kim, Y. W. Hu, B. Bolink, Henk Yoo, S. Friend, R. H. Rappe, A. M. Lee, T.W. 2021 Comprehensive defect suppression in perovskite nanocrystals for high-efficiency light-emitting diodes Nature Photonics 15 148 155
RODERIC: Repositorio Institucional de la Universitat de Valéncia
instname
RODERIC. Repositorio Institucional de la Universitat de Valéncia
Kim, Y. H. Kim, S. Kakekhani, A. Park, J. Park, J. Lee, Y. H. Xu, H. Nagane, S. Wexler, R. B. Kim, D. H. Hyeon Jo, S. Martínez Sarti, Laura Tan, P. Sadhanala, A. Park, G. S. Kim, Y. W. Hu, B. Bolink, Henk Yoo, S. Friend, R. H. Rappe, A. M. Lee, T.W. 2021 Comprehensive defect suppression in perovskite nanocrystals for high-efficiency light-emitting diodes Nature Photonics 15 148 155
RODERIC: Repositorio Institucional de la Universitat de Valéncia
instname
RODERIC. Repositorio Institucional de la Universitat de Valéncia
Electroluminescence efficiencies of metal halide perovskite nanocrystals (PNCs) are limited by a lack of material strategies that can both suppress the formation of defects and enhance the charge carrier confinement. Here we report a one-dopant alloy
Publikováno v:
Physical Review B. 102
The development of next-generation quaternary chalcogenides, such as $\mathrm{C}{\mathrm{u}}_{2}\mathrm{ZnSn}{\mathrm{S}}_{4}$ (CZTS) and $\mathrm{C}{\mathrm{u}}_{2}\mathrm{ZnGe}{\mathrm{S}}_{4}$ (CZGS), for solar energy and thermoelectric applicatio
Publikováno v:
The Journal of Physical Chemistry C. 123:2321-2328
The properties of a material are often strongly influenced by its surfaces. Depending on the nature of the chemical bonding in a material, its surface can undergo a variety of stabilizing reconstructions that dramatically alter the chemical reactivit