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Yunxiang Pan
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Progresses in the Preparation of Coke Resistant Ni‐based Catalyst for Steam and CO2 Reforming of Methane
C Liu, J Ye, J Jiang, Y Pan
ChemCatChem 3 (3), 529-541, 2011
6642011
Photocatalytic CO2 Reduction by Carbon-Coated Indium-Oxide Nanobelts
YX Pan, Y You, S Xin, Y Li, G Fu, Z Cui, YL Men, FF Cao, SH Yu, ...
Journal of the American Chemical Society 139 (11), 4123-4129, 2017
5072017
Highly efficient and stable Ni/CeO2-SiO2 catalyst for dry reforming of methane: Effect of interfacial structure of Ni/CeO2 on SiO2
X Yan, T Hu, P Liu, S Li, B Zhao, Q Zhang, W Jiao, S Chen, P Wang, J Lu, ...
Applied Catalysis B: Environmental 246, 221-231, 2019
2352019
Effect of surface hydroxyls on selective CO2 hydrogenation over Ni4/γ-Al2O3: A density functional theory study
Y Pan, C Liu, Q Ge
Journal of Catalysis 272 (2), 227-234, 2010
1952010
Preparation and characterization of coke resistant Ni/SiO2 catalyst for carbon dioxide reforming of methane
YX Pan, CJ Liu, P Shi
Journal of Power Sources 176 (1), 46-53, 2008
1862008
Adsorption and Protonation of CO2 on Partially Hydroxylated γ-Al2O3 Surfaces: A Density Functional Theory Study
Y Pan, C Liu, Q Ge
Langmuir 24 (21), 12410-12419, 2008
1622008
Photocatalytic CO2 reduction highly enhanced by oxygen vacancies on Pt-nanoparticle-dispersed gallium oxide
YX Pan, ZQ Sun, HP Cong, YL Men, S Xin, J Song, SH Yu
Nano Research 9, 1689-1700, 2016
1522016
Effects of Hydration and Oxygen Vacancy on CO2 Adsorption and Activation on β-Ga2O3(100)
Y Pan, C Liu, D Mei, Q Ge
Langmuir 26 (8), 5551-5558, 2010
1512010
A tumor microenvironment responsive biodegradable CaCO3/MnO2-based nanoplatform for the enhanced photodynamic therapy and improved PD-L1 immunotherapy
Y Liu, Y Pan, W Cao, F Xia, B Liu, J Niu, G Alfranca, X Sun, L Ma, ...
Theranostics 9 (23), 6867, 2019
1452019
Porous carbon nitride nanosheets for enhanced photocatalytic activities
J Hong, S Yin, Y Pan, J Han, T Zhou, R Xu
Nanoscale 6 (24), 14984-14990, 2014
1202014
CO2 adsorption and activation over γ-Al2O3-supported transition metal dimers: A density functional study
Y Pan, C Liu, TS Wiltowski, Q Ge
Catalysis Today 147 (2), 68-76, 2009
1032009
Promotion effects of Ga 2 O 3 on CO 2 adsorption and conversion over a SiO 2-supported Ni catalyst
Y Pan, P Kuai, Y Liu, Q Ge, C Liu
Energy & Environmental Science 3 (9), 1322-1325, 2010
1022010
Highly dispersed Pt-based catalysts for selective CO2 hydrogenation to methanol at atmospheric pressure
YL Men, Y Liu, Q Wang, ZH Luo, S Shao, YB Li, YX Pan
Chemical Engineering Science 200, 167-175, 2019
922019
Noble-metal-free CuS/CdS photocatalyst for efficient visible-light-driven photocatalytic H2 production from water
F Zhang, HQ Zhuang, W Zhang, J Yin, FH Cao, YX Pan
Catalysis Today 330, 203-208, 2019
862019
Nitrogen doping of indium oxide for enhanced photocatalytic reduction of CO2 to methanol
Y Yang, YX Pan, X Tu, C Liu
Nano Energy 101, 107613, 2022
852022
Enhanced Visible-Light-Driven Photocatalytic H2 Evolution from Water on Noble-Metal-Free CdS-Nanoparticle-Dispersed Mo2C@C Nanospheres
YX Pan, JB Peng, S Xin, Y You, YL Men, F Zhang, MY Duan, Y Cui, ...
ACS Sustainable Chemistry & Engineering 5 (6), 5449-5456, 2017
852017
Peptide self-assembled biofilm with unique electron transfer flexibility for highly efficient visible-light-driven photocatalysis
YX Pan, HP Cong, YL Men, S Xin, ZQ Sun, CJ Liu, SH Yu
ACS nano 9 (11), 11258-11265, 2015
852015
Hydrogen Adsorption on Ga2O3 Surface: A Combined Experimental and Computational Study
Y Pan, D Mei, C Liu, Q Ge
The Journal of Physical Chemistry C 115 (20), 10140-10146, 2011
802011
Coupling cobalt sulfide nanosheets with cadmium sulfide nanoparticles for highly efficient visible-light-driven photocatalysis
F Zhang, HQ Zhuang, J Song, YL Men, YX Pan, SH Yu
Applied Catalysis B: Environmental 226, 103-110, 2018
752018
CdS quantum dots and tungsten carbide supported on anatase–rutile composite TiO 2 for highly efficient visible-light-driven photocatalytic H 2 evolution from water
Y Pan, T Zhou, J Han, J Hong, Y Wang, W Zhang, R Xu
Catalysis Science & Technology 6 (7), 2206-2213, 2016
742016
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