Zobrazeno 1 - 10
of 13
pro vyhledávání: '"Aya K. Buckley"'
Autor:
Zhen Qi, Ajay R. Kashi, Aya K. Buckley, John S. Miller, Jianchao Ye, Monika M. Biener, Alexandre C. Foucher, Eric A. Stach, Sichao Ma, Kendra P. Kuhl, Juergen Biener
Publikováno v:
The Journal of Physical Chemistry C. 126:19637-19646
Publikováno v:
Nature Nanotechnology. 17:811-813
Autor:
Aya K. Buckley, F. Dean Toste, William A. Goddard, Jennifer L. Garrison, Sean W. Utan, Gregory M. Su, Myoung Hwan Oh, Francesca M. Toma, Chenhui Zhu, Tao Cheng
Publikováno v:
ACS Catalysis. 11:9034-9042
Author(s): Buckley, AK; Cheng, T; Oh, MH; Su, GM; Garrison, J; Utan, SW; Zhu, C; Toste, FD; Goddard, WA; Toma, FM | Abstract: We report the discovery of a quaternary ammonium surface additive for CO2 reduction on Ag surfaces that changes the Faradaic
Publikováno v:
Nature nanotechnology. 17(8)
Autor:
Stephen E, Weitzner, Sneha A, Akhade, Ajay R, Kashi, Zhen, Qi, Aya K, Buckley, Ziyang, Huo, Sichao, Ma, Monika, Biener, Brandon C, Wood, Kendra P, Kuhl, Joel B, Varley, Juergen, Biener
Publikováno v:
The Journal of chemical physics. 155(11)
Cu-based catalysts currently offer the most promising route to actively and selectively produce value-added chemicals via electrochemical reduction of CO
Autor:
Guiji, Liu, Michelle, Lee, Soonho, Kwon, Guosong, Zeng, Johanna, Eichhorn, Aya K, Buckley, F Dean, Toste, William A, Goddard, Francesca M, Toma
Publikováno v:
Proc Natl Acad Sci U S A
We elucidate the role of subsurface oxygen on the production of C(2) products from CO(2) reduction over Cu electrocatalysts using the newly developed grand canonical potential kinetics density functional theory method, which predicts that the rate of
Autor:
F. Dean Toste, Johanna Eichhorn, Aya K. Buckley, William A. Goddard, Guiji Liu, Soonho Kwon, Francesca M. Toma, Michelle Lee, Guosong Zeng
Publikováno v:
Proceedings of the National Academy of Sciences. 118
We elucidate the role of subsurface oxygen on the production of C2 products from CO2 reduction over Cu electrocatalysts using the newly developed grand canonical potential kinetics density functional theory method, which predicts that the rate of C2
Autor:
Aya K. Buckley, F. Dean Toste, Francesca M. Toma, David M. Larson, Michelle Lee, Roman V. Kazantsev, William A. Goddard, Tao Cheng
Publikováno v:
Journal of the American Chemical Society. 141:7355-7364
The limited selectivity of existing CO_2 reduction catalysts and rising levels of CO_2 in the atmosphere necessitate the identification of specific structure–reactivity relationships to inform catalyst development. Herein, we develop a predictive f
Publikováno v:
ECS Meeting Abstracts. :807-807
Autor:
Aya K. Buckley, Ajay R. Kashi, Stephen E. Weitzner, Juergen Biener, Joel B. Varley, Brandon C. Wood, Ziyang Huo, Sneha A. Akhade, Kendra P. Kuhl, Sichao Ma, Monika M. Biener, Zhen Qi
Publikováno v:
The Journal of Chemical Physics. 155:114702
Cu-based catalysts currently offer the most promising route to actively and selectively produce value-added chemicals via electrochemical reduction of CO2 (eCO2R); yet further improvements are required for their wide-scale deployment in carbon mitiga