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Jing Li
Jing Li
Chemistry, Yale University
E-mail confirmado em yale.edu
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Hydroxide Is Not a Promoter of C2+ Product Formation in the Electrochemical Reduction of CO on Copper
J Li, D Wu, AS Malkani, X Chang, MJ Cheng, B Xu, Q Lu
Angewandte Chemie 132 (11), 4494-4499, 2020
1012020
Understanding the electric and nonelectric field components of the cation effect on the electrochemical CO reduction reaction
AS Malkani, J Li, NJ Oliveira, M He, X Chang, B Xu, Q Lu
Science Advances 6 (45), eabd2569, 2020
992020
Electrokinetic and in situ spectroscopic investigations of CO electrochemical reduction on copper
J Li, X Chang, H Zhang, AS Malkani, M Cheng, B Xu, Q Lu
Nature communications 12 (1), 3264, 2021
902021
Effectively increased efficiency for electroreduction of carbon monoxide using supported polycrystalline copper powder electrocatalysts
J Li, K Chang, H Zhang, M He, WA Goddard III, JG Chen, MJ Cheng, Q Lu
ACS Catalysis 9 (6), 4709-4718, 2019
902019
CO electroreduction: current development and understanding of Cu-based catalysts
H Zhang, J Li, MJ Cheng, Q Lu
Acs Catalysis 9 (1), 49-65, 2018
832018
Two-Dimensional SnO2 Nanosheets for Efficient Carbon Dioxide Electroreduction to Formate
J Li, J Jiao, H Zhang, P Zhu, H Ma, C Chen, H Xiao, Q Lu
ACS Sustainable Chemistry & Engineering 8 (12), 4975-4982, 2020
692020
C−C Coupling Is Unlikely to Be the Rate‐Determining Step in the Formation of C2+ Products in the Copper‐Catalyzed Electrochemical Reduction of CO
X Chang, J Li, H Xiong, H Zhang, Y Xu, H Xiao, Q Lu, B Xu
Angewandte Chemie International Edition 61 (2), e202111167, 2022
592022
Correlating CO Coverage and CO Electroreduction on Cu via High-Pressure in Situ Spectroscopic and Reactivity Investigations
J Hou, X Chang, J Li, B Xu, Q Lu
Journal of the American Chemical Society 144 (48), 22202–22211, 2022
362022
Weak CO binding sites induced by Cu–Ag interfaces promote CO electroreduction to multi-carbon liquid products
J Li, H Xiong, X Liu, D Wu, D Su, B Xu, Q Lu
Nature Communications 14 (1), 698, 2023
272023
Impact of forced convection on spectroscopic observations of the electrochemical CO reduction reaction
AS Malkani, J Li, J Anibal, Q Lu, B Xu
ACS Catalysis 10 (2), 941-946, 2019
272019
Intercepting Elusive Intermediates in Cu-Mediated CO Electrochemical Reduction with Alkyl Species
J Li, C Li, J Hou, W Gao, X Chang, Q Lu, B Xu
Journal of the American Chemical Society 144 (44), 20495–20506, 2022
122022
Mechanism-guided realization of selective carbon monoxide electroreduction to methanol
J Li, B Shang, Y Gao, S Cheon, CL Rooney, H Wang
Nature Synthesis 2 (12), 1194-1201, 2023
42023
Benchmarking of commercial Cu catalysts in CO 2 electro-reduction using a gas-diffusion type microfluidic flow electrolyzer
H Xiong, J Li, D Wu, B Xu, Q Lu
Chemical Communications 59 (37), 5615-5618, 2023
32023
Tailoring Interfaces for Enhanced Methanol Production from Photoelectrochemical CO2 Reduction
B Shang, F Zhao, S Suo, Y Gao, C Sheehan, S Jeon, J Li, CL Rooney, ...
Journal of the American Chemical Society 146 (3), 2267-2274, 2024
12024
CO2-Promoted Electrocatalytic Reduction of Chlorinated Hydrocarbons
C Choi, S Kwon, Y Gao, S Cheon, J Li, F Menges, WA Goddard III, ...
Journal of the American Chemical Society 146 (12), 8486-8491, 2024
2024
Influence of Carbon Nanotube Support on Electrochemical Nitrate Reduction Catalyzed by Cobalt Phthalocyanine Molecules
NJ Harmon, J Li, BT Wang, Y Gao, H Wang
ACS Catalysis 14, 3575-3581, 2024
2024
Cover Picture: Hydroxide Is Not a Promoter of C2+ Product Formation in the Electrochemical Reduction of CO on Copper (Angew. Chem. Int. Ed. 11/2020)
J Li, D Wu, AS Malkani, X Chang, MJ Cheng, B Xu, Q Lu
Angewandte Chemie International Edition 59 (11), 4189-4189, 2020
2020
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