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Ye Wang
Ye Wang
在 xmu.edu.cn 的电子邮件经过验证
标题
引用次数
引用次数
年份
Development of novel catalysts for Fischer–Tropsch synthesis: tuning the product selectivity
Q Zhang, J Kang, Y Wang
ChemCatChem 2 (9), 1030-1058, 2010
9002010
Recent advances in heterogeneous selective oxidation catalysis for sustainable chemistry
Z Guo, B Liu, Q Zhang, W Deng, Y Wang, Y Yang
Chemical Society Reviews 43 (10), 3480-3524, 2014
7612014
Nanocomposites of TiO2 and reduced graphene oxide as efficient photocatalysts for hydrogen evolution
W Fan, Q Lai, Q Zhang, Y Wang
The Journal of Physical Chemistry C 115 (21), 10694-10701, 2011
7172011
Direct and Highly Selective Conversion of Synthesis Gas into Lower Olefins: Design of a Bifunctional Catalyst Combining Methanol Synthesis and Carbon–Carbon Coupling
K Cheng, B Gu, X Liu, J Kang, Q Zhang, Y Wang
Angewandte Chemie 128 (15), 4803-4806, 2016
6472016
Photocatalytic and photoelectrocatalytic reduction of CO 2 using heterogeneous catalysts with controlled nanostructures
S Xie, Q Zhang, G Liu, Y Wang
Chemical Communications 52 (1), 35-59, 2016
6182016
The past, present and future of heterogeneous catalysis
I Fechete, Y Wang, JC Védrine
Catalysis Today 189 (1), 2-27, 2012
5352012
Photocatalytic conversion of carbon dioxide with water into methane: platinum and copper (I) oxide co‐catalysts with a core–shell structure
Q Zhai, S Xie, W Fan, Q Zhang, Y Wang, W Deng, Y Wang
Angewandte Chemie 125 (22), 5888-5891, 2013
5122013
Semiconductor-based nanocomposites for photocatalytic H 2 production and CO 2 conversion
W Fan, Q Zhang, Y Wang
Physical Chemistry Chemical Physics 15 (8), 2632-2649, 2013
4572013
Bifunctional catalysts for one-step conversion of syngas into aromatics with excellent selectivity and stability
K Cheng, W Zhou, J Kang, S He, S Shi, Q Zhang, Y Pan, W Wen, Y Wang
Chem 3 (2), 334-347, 2017
4482017
Chemical synthesis of lactic acid from cellulose catalysed by lead (II) ions in water
Y Wang, W Deng, B Wang, Q Zhang, X Wan, Z Tang, Y Wang, C Zhu, ...
Nature communications 4, 2013
4312013
Direct partial oxidation of methane to synthesis gas by cerium oxide
K Otsuka, Y Wang, E Sunada, I Yamanaka
Journal of Catalysis 175 (2), 152-160, 1998
4291998
MgO-and Pt-promoted TiO2 as an efficient photocatalyst for the preferential reduction of carbon dioxide in the presence of water
S Xie, Y Wang, Q Zhang, W Deng, Y Wang
ACS Catalysis 4 (10), 3644-3653, 2014
4152014
Base-free aerobic oxidation of 5-hydroxymethyl-furfural to 2, 5-furandicarboxylic acid in water catalyzed by functionalized carbon nanotube-supported Au–Pd alloy nanoparticles
X Wan, C Zhou, J Chen, W Deng, Q Zhang, Y Yang, Y Wang
ACS Catalysis 4 (7), 2175-2185, 2014
4032014
Conversion of cellulose into sorbitol over carbon nanotube-supported ruthenium catalyst
W Deng, X Tan, W Fang, Q Zhang, Y Wang
Catalysis Letters 133 (1-2), 167-174, 2009
3702009
Direct conversion of methane into oxygenates
K Otsuka, Y Wang
Applied Catalysis A: General 222 (1), 145-161, 2001
3512001
Ruthenium nanoparticles supported on carbon nanotubes as efficient catalysts for selective conversion of synthesis gas to diesel fuel
J Kang, S Zhang, Q Zhang, Y Wang
Angewandte Chemie 121 (14), 2603-2606, 2009
3372009
Mesoporous Zeolite‐Supported Ruthenium Nanoparticles as Highly Selective Fischer–Tropsch Catalysts for the Production of C5–C11 Isoparaffins
J Kang, K Cheng, L Zhang, Q Zhang, J Ding, W Hua, Y Lou, Q Zhai, ...
Angewandte Chemie 123 (22), 5306-5309, 2011
3322011
Selective transformation of carbon dioxide into lower olefins with a bifunctional catalyst composed of ZnGa 2 O 4 and SAPO-34
X Liu, M Wang, C Zhou, W Zhou, K Cheng, J Kang, Q Zhang, W Deng, ...
Chemical Communications 54 (2), 140-143, 2018
3252018
Characterizations of iron-containing MCM-41 and its catalytic properties in epoxidation of styrene with hydrogen peroxide
Y Wang, Q Zhang, T Shishido, K Takehira
Journal of Catalysis 209 (1), 186-196, 2002
3082002
CdS–graphene and CdS–CNT nanocomposites as visible-light photocatalysts for hydrogen evolution and organic dye degradation
A Ye, W Fan, Q Zhang, W Deng, Y Wang
Catalysis Science & Technology 2 (5), 969-978, 2012
2952012
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