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L. X. Chen
L. X. Chen
Jilin University; University of Toronto
utoronto.ca의 이메일 확인됨
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Atomic (single, double, and triple atoms) catalysis: frontiers, opportunities, and challenges
ZW Chen, LX Chen(#co-first author), CC Yang, Q Jiang
Journal of Materials Chemistry A 7 (8), 3492-3515, 2019
2692019
Design of Dual-Modified MoS2 with Nanoporous Ni and Graphene as Efficient Catalysts for the Hydrogen Evolution Reaction
LX Chen, ZW Chen, Y Wang, CC Yang, Q Jiang
ACS Catalysis 8 (9), 8107-8114, 2018
1492018
A triple atom catalyst with ultrahigh loading potential for nitrogen electrochemical reduction
ZW Chen, LX Chen, M Jiang, D Chen, ZL Wang, X Yao, CV Singh, ...
Journal of materials chemistry A 8 (30), 15086-15093, 2020
552020
Understanding electro-catalysis by using density functional theory
ZW Chen, LX Chen, Z Wen, Q Jiang
Physical Chemistry Chemical Physics 21 (43), 23782-23802, 2019
552019
Machine-learning-accelerated discovery of single-atom catalysts based on bidirectional activation mechanism
ZW Chen, Z Lu, LX Chen(#co-first author), M Jiang, D Chen, CV Singh
Chem Catalysis 1 (1), 183-195, 2021
532021
Insight into the excellent catalytic activity of (CoMo) S2/graphene for hydrogen evolution reaction
LX Chen, ZW Chen, Y Zhang, CC Yang, Q Jiang
Applied Catalysis B: Environmental 258, 118012, 2019
462019
Insights on the dual role of two-dimensional materials as catalysts and supports for energy and environmental catalysis
LX Chen, ZW Chen, M Jiang, Z Lu, C Gao, G Cai, CV Singh
Journal of Materials Chemistry A 9 (4), 2018-2042, 2021
372021
Hydrogen storage alloys/reduced graphite oxide: an efficient hybrid electrode with enhanced high-rate dischargeability
MM Li, CC Yang, LX Chen, Q Jiang
Electrochimica Acta 200, 59-65, 2016
372016
A new strategy to improve the high-rate performance of hydrogen storage alloys with MoS2 nanosheets
LX Chen, YF Zhu, CC Yang, ZW Chen, DM Zhang, Q Jiang
Journal of Power Sources 333, 17-23, 2016
342016
Preparation of Gd 2 O 2 S: Er 3+, Yb 3+ phosphor and its multi-wavelength sensitive upconversion luminescence mechanism
W Fan, X Zhang, L Chen, L Lu
CrystEngComm 17 (8), 1881-1889, 2015
282015
Machine-Learning-Driven High-Entropy Alloy Catalyst Discovery to Circumvent the Scaling Relation for CO2 Reduction Reaction
ZW Chen, Z Gariepy, L Chen, X Yao, A Anand, SJ Liu, ...
ACS Catalysis 12 (24), 14864-14871, 2022
262022
Materials perspective on new lithium chlorides and bromides: insights into thermo-physical properties
M Jiang, S Mukherjee, ZW Chen, LX Chen, ML Li, HY Xiao, C Gao, ...
Physical Chemistry Chemical Physics 22 (39), 22758-22767, 2020
202020
Two-dimensional graphdiyne-confined platinum catalyst for hydrogen evolution and oxygen reduction reactions
LX Chen, M Jiang, Z Lu, C Gao, ZW Chen, CV Singh
ACS Applied Materials & Interfaces 13 (40), 47541-47548, 2021
152021
How does mass transfer influence electrochemical carbon dioxide reduction reaction? A case study of Ni molecular catalyst supported on carbon
C Guo, S Liu, Z Chen, B Li, L Chen, CV Singh, B Liu, Q Mao
Chemical Communications 57 (11), 1384-1387, 2021
152021
High-throughput and machine-learning accelerated design of high entropy alloy catalysts
ZW Chen, LX Chen(#co-first author), Z Gariepy, X Yao, CV Singh
Trends in Chemistry, 2022
122022
High-entropy alloy catalysts: high-throughput and machine learning-driven design
L Chen, Z Chen, X Yao, B Su, W Chen, X Pang, KS Kim, CV Singh, Y Zou
J. Mater. Inform 2 (19), 10.20517, 2022
122022
Machine learning-enabled band gap prediction of monolayer transition metal chalcogenide alloys
C Gao, X Yang, M Jiang, L Chen, Z Chen, CV Singh
Physical Chemistry Chemical Physics 24 (7), 4653-4665, 2022
112022
Transition-metal-free boron doped SbN monolayer for N2 adsorption and reduction to NH3: A first-principles study
D Chen, Z Chen, L Chen, Y Li, S Xiao, B Xiao
Journal of Colloid and Interface Science 607, 1551-1561, 2022
92022
Synergistic vacancy defects and mechanical strain for the modulation of the mechanical, electronic and optical properties of monolayer tungsten disulfide
C Gao, X Yang, M Jiang, L Chen, Z Chen, CV Singh
Physical Chemistry Chemical Physics 23 (10), 6298-6308, 2021
72021
Eggshell-like MoS2 Nanostructures with Negative Curvature and Stepped Faces for Efficient Hydrogen Evolution Reactions
J Li, LX Chen(#co-first author), XX Liu, Z Wen, CV Singh, CC Yang, ...
ACS Applied Nano Materials 4 (12), 14086-14093, 2021
62021
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학술자료 1–20