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Works (8)

The effect of supports on hydrogenation and water-tolerance of copper-based catalysts

New Journal of Chemistry
2021 | Journal article
Contributors: Zheng Chen; Xueying Zhao; Shuwei Wei; Dengfeng Wang; Xuelan Zhang
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Crossref

The Contribution of the Spatial Restriction for Improvement of Hydrogenation and Water‐tolerant for Cu/SiO2 Catalysts by Varied Pores of Support

ChemistrySelect
2021-12-20 | Journal article
Contributors: Zheng Chen; Tao Zhang; Xueying Zhao; Xuelan L. Zhang; Dengfeng Wang; Shuwei Wei
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Crossref

Effect of the ZnO/SiO2 ratio on the structure and catalytic activity of Cu/SiO2 and Cu/ZnO catalysts in water-containing ester hydrogenation

New Journal of Chemistry
2020 | Journal article
Contributors: Zheng Chen; Shuwei Wei; Xueying Zhao; Dengfeng Wang; Jiangang Chen
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Crossref

Comparative Study of the Effect of Water on Cu/SiO2 Catalysts Prepared by Different Methods: Structure, Hydrogenation Performance and the Promotion of Reduction Cu+ to Cu0

ChemistrySelect
2020-09-14 | Journal article
Contributors: Zheng Chen; Jiangang Chen
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Crossref

Insight into the deactivation mechanism of water on active Cu species for ester hydrogenation: Experimental and theoretical study

Molecular Catalysis
2020-06 | Journal article
Contributors: Zheng Chen; Hui Ge; Pengfei Wang; Jiaqiang Sun; Mohamed Abbas; Jiangang Chen
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Crossref

The Promotion Effect of Transition Metals on Water‐Tolerant Performance of Cu/SiO2 Catalysts in Hydrogenation Reaction

ChemistrySelect
2019-12-30 | Journal article
Contributors: Zheng Chen; Guisheng Zhu; Yi Wu; Jiaqiang Sun; Mohamed Abbas; Pengfei Wang; Jiangang Chen
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Crossref

The texture evolution of g-C 3 N 4 nanosheets supported Fe catalyst during Fischer-Tropsch synthesis

Molecular Catalysis
2018-01 | Journal article
Source: Self-asserted source
Zheng Chen

Effect of Configuration Addition of Precursors on Structure and Catalysis of Cu/SiO2 Catalysts Prepared by Ammonia Evaporation–Hydrothermal Method

Industrial & Engineering Chemistry Research
2017-08-23 | Journal article
Source: Self-asserted source
Zheng Chen