Wei Chu
Wei Chu
Prof, Sichuan Univ, Top 12th Univ in China
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Advances in the development of novel cobalt Fischer− Tropsch catalysts for synthesis of long-chain hydrocarbons and clean fuels
AY Khodakov, W Chu, P Fongarland
Chemical reviews 107 (5), 1692-1744, 2007
Facile route for synthesizing ordered mesoporous Ni–Ce–Al oxide materials and their catalytic performance for methane dry reforming to hydrogen and syngas
N Wang, K Shen, L Huang, X Yu, W Qian, W Chu
Acs Catalysis 3 (7), 1638-1651, 2013
Cobalt species in promoted cobalt alumina-supported Fischer–Tropsch catalysts
W Chu, PA Chernavskii, L Gengembre, GA Pankina, P Fongarland, ...
Journal of Catalysis 252 (2), 215-230, 2007
Methanation of carbon dioxide on Ni/ZrO2-Al2O3 catalysts: Effects of ZrO2 promoter and preparation method of novel ZrO2-Al2O3 carrier
M Cai, J Wen, W Chu, X Cheng, Z Li
Journal of Natural Gas Chemistry 20 (3), 318-324, 2011
Synthesis, characterization and catalytic performances of Ce-SBA-15 supported nickel catalysts for methane dry reforming to hydrogen and syngas
N Wang, W Chu, T Zhang, XS Zhao
International Journal of Hydrogen Energy 37 (1), 19-30, 2012
A comparison study on methane dry reforming with carbon dioxide over LaNiO3 perovskite catalysts supported on mesoporous SBA-15, MCM-41 and silica carrier
N Wang, X Yu, Y Wang, W Chu, M Liu
Catalysis today 212, 98-107, 2013
Degradation of benzotriazole by a novel Fenton-like reaction with mesoporous Cu/MnO2: combination of adsorption and catalysis oxidation
Y Zhang, C Liu, B Xu, F Qi, W Chu
Applied catalysis b: environmental 199, 447-457, 2016
Carbon dioxide reforming of methane for syngas production over La-promoted NiMgAl catalysts derived from hydrotalcites
X Yu, N Wang, W Chu, M Liu
Chemical Engineering Journal 209, 623-632, 2012
Retracted Article: Black mesoporous anatase TiO 2 nanoleaves: a high capacity and high rate anode for aqueous Al-ion batteries
YJ He, JF Peng, W Chu, YZ Li, DG Tong
Journal of Materials Chemistry A 2 (6), 1721-1731, 2014
Glow‐Discharge Plasma‐Assisted Design of Cobalt Catalysts for Fischer–Tropsch Synthesis
W Chu, LN Wang, PA Chernavskii, AY Khodakov
Angewandte Chemie 120 (27), 5130-5133, 2008
Cross‐coupled macro‐mesoporous carbon network toward record high energy‐power density supercapacitor at 4 V
J Li, N Wang, J Tian, W Qian, W Chu
Advanced Functional Materials 28 (51), 1806153, 2018
Crystal-plane effect of nanoscale CeO 2 on the catalytic performance of Ni/CeO 2 catalysts for methane dry reforming
N Wang, W Qian, W Chu, F Wei
Catalysis Science & Technology 6 (10), 3594-3605, 2016
A selective Au-ZnO/TiO2 hybrid photocatalyst for oxidative coupling of methane to ethane with dioxygen
S Song, H Song, L Li, S Wang, W Chu, K Peng, X Meng, Q Wang, B Deng, ...
Nature Catalysis 4 (12), 1032-1042, 2021
Effect of the surface oxygen groups on methane adsorption on coals
S Hao, J Wen, X Yu, W Chu
Applied Surface Science 264, 433-442, 2013
Facile synthesis of Mn-doped BiOCl for metronidazole photodegradation: Optimization, degradation pathway, and mechanism
J Cao, J Li, W Chu, W Cen
Chemical Engineering Journal 400, 125813, 2020
A critical study on the adsorption of heterocyclic sulfur and nitrogen compounds by activated carbon: equilibrium, kinetics and thermodynamics
J Wen, X Han, H Lin, Y Zheng, W Chu
Chemical Engineering Journal 164 (1), 29-36, 2010
Synthesis, characterization and catalytic performance of MgO-coated Ni/SBA-15 catalysts for methane dry reforming to syngas and hydrogen
N Wang, X Yu, K Shen, W Chu, W Qian
International journal of hydrogen energy 38 (23), 9718-9731, 2013
Environmental remediation applications of carbon nanotubes and graphene oxide: Adsorption and catalysis
Y Wang, C Pan, W Chu, AK Vipin, L Sun
Nanomaterials 9 (3), 439, 2019
One-step solvothermal synthesis of Fe3O4@ C core–shell nanoparticles with tunable sizes
J Zheng, ZQ Liu, XS Zhao, M Liu, X Liu, W Chu
Nanotechnology 23 (16), 165601, 2012
Transition-metal single atoms in nitrogen-doped graphenes as efficient active centers for water splitting: a theoretical study
Y Zhou, G Gao, Y Li, W Chu, LW Wang
Physical Chemistry Chemical Physics 21 (6), 3024-3032, 2019
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