Min Liu
Min Liu
Professor, Central South University
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Cited by
Cited by
Homogeneously dispersed multimetal oxygen-evolving catalysts
B Zhang, X Zheng, O Voznyy, R Comin, M Bajdich, M García-Melchor, ...
Science 352 (6283), 333-337, 2016
Enhanced electrocatalytic CO2 reduction via field-induced reagent concentration
M Liu, Y Pang, B Zhang, P De Luna, O Voznyy, J Xu, X Zheng, CT Dinh, ...
Nature 537, 382–386, 2016
Defect-rich and ultrathin N doped carbon nanosheets as advanced trifunctional metal-free electrocatalysts for the ORR, OER and HER
H Jiang, J Gu, X Zheng, M Liu, X Qiu, L Wang, W Li, Z Chen, X Ji, J Li
Energy & Environmental Science 12 (1), 322-333, 2019
Accelerated discovery of CO 2 electrocatalysts using active machine learning
M Zhong, K Tran, Y Min, C Wang, Z Wang, CT Dinh, P De Luna, Z Yu, ...
Nature 581 (7807), 178-183, 2020
Dopant-induced electron localization drives CO 2 reduction to C 2 hydrocarbons
Y Zhou, F Che, M Liu, C Zou, Z Liang, P De Luna, H Yuan, J Li, Z Wang, ...
Nature chemistry 10 (9), 974-980, 2018
Product selectivity of photocatalytic CO2 reduction reactions
J Fu, K Jiang, X Qiu, J Yu, M Liu
Materials Today 32, 222-243, 2020
Surface Modification of CoOx Loaded BiVO4 Photoanodes with Ultrathin p-Type NiO Layers for Improved Solar Water Oxidation
M Zhong, T Hisatomi, Y Kuang, J Zhao, M Liu, A Iwase, Q Jia, ...
Journal of the American Chemical Society 137 (15), 5053-5060, 2015
Multi-site electrocatalysts for hydrogen evolution in neutral media by destabilization of water molecules
CT Dinh, A Jain, FPG de Arquer, P De Luna, J Li, N Wang, X Zheng, J Cai, ...
Nature Energy 4 (2), 107-114, 2019
Theory-driven design of high-valence metal sites for water oxidation confirmed using in situ soft X-ray absorption
X Zheng, B Zhang, P De Luna, Y Liang, R Comin, O Voznyy, L Han, ...
Nature chemistry 10 (2), 149-154, 2018
Missing-linker metal-organic frameworks for oxygen evolution reaction
Z Xue, K Liu, Q Liu, Y Li, M Li, CY Su, N Ogiwara, H Kobayashi, ...
Nature communications 10 (1), 5048, 2019
Hybrid CuxO/TiO2 Nanocomposites As Risk-Reduction Materials in Indoor Environments
X Qiu, M Miyauchi, K Sunada, M Minoshima, M Liu, Y Lu, D Li, ...
ACS nano 6 (2), 1609-1618, 2012
Sulfur-modulated tin sites enable highly selective electrochemical reduction of CO2 to formate
X Zheng, P De Luna, FPG de Arquer, B Zhang, N Becknell, MB Ross, Y Li, ...
Joule 1 (4), 794-805, 2017
Iron phthalocyanine with coordination induced electronic localization to boost oxygen reduction reaction
K Chen, K Liu, P An, H Li, Y Lin, J Hu, C Jia, J Fu, H Li, H Liu, Z Lin, W Li, ...
Nature Communications 11 (1), 4173, 2020
Modulating electronic structure of metal-organic frameworks by introducing atomically dispersed Ru for efficient hydrogen evolution
Y Sun, Z Xue, Q Liu, Y Jia, Y Li, K Liu, Y Lin, M Liu, G Li, CY Su
Nature Communications 12 (1), 1369, 2021
10.6%-certified colloidal quantum dot solar cells via solvent-polarity-engineered halide passivation
X Lan, O Voznyy, FP Garcia de Arquer, M Liu, J Xu, AH Proppe, G Walters, ...
Nano Letters 16 (7), 4630–4634, 2016
Continuous-wave lasing in colloidal quantum dot solids enabled by facet-selective epitaxy
F Fan, O Voznyy, RP Sabatini, KT Bicanic, MM Adachi, JR McBride, ...
Nature 544 (7648), 75-79, 2017
Anatase TiO 2 single crystals with exposed {001} and {110} facets: facile synthesis and enhanced photocatalysis
M Liu, L Piao, L Zhao, S Ju, Z Yan, T He, C Zhou, W Wang
Chemical Communications 46 (10), 1664-1666, 2010
Bright colloidal quantum dot light-emitting diodes enabled by efficient chlorination
X Li, YB Zhao, F Fan, L Levina, M Liu, R Quintero-Bermudez, X Gong, ...
Nature Photonics 12 (3), 159-164, 2018
Interfacial electronic structure modulation of NiTe nanoarrays with NiS nanodots facilitates electrocatalytic oxygen evolution
Z Xue, X Li, Q Liu, M Cai, K Liu, M Liu, Z Ke, X Liu, G Li
Advanced Materials 31 (21), 1900430, 2019
Cu(II) Oxide Amorphous Nanoclusters Grafted Ti3+ Self-Doped TiO2: An Efficient Visible Light Photocatalyst
M Liu, X Qiu, M Miyauchi, K Hashimoto
Chemistry of Materials 23 (23), 5282-5286, 2011
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