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密度泛函理论研究Cu/α-MoC表面上的水煤气变换反应。

DFT study the water-gas shift reaction over Cu/α-MoC surface.

作者信息

Zou Xue-Yan, Mi Le, Zuo Zhi-Jun, Gao Zhi-Hua, Huang Wei

机构信息

Key Laboratory of Coal Science and Technology of Ministry of Education and Shanxi Province, Taiyuan University of Technology, Taiyuan, 030024, Shanxi, China.

出版信息

J Mol Model. 2020 Aug 19;26(9):237. doi: 10.1007/s00894-020-04502-5.

Abstract

Cu-based catalysts have been widely used for water-gas shift reaction (WGS, CO + HO → CO + H), and α-MoC support also shows the good performance for the reaction. Therefore, WGS reaction is systematically studied over Cu/α-MoC by using density functional theory (DFT). DFT result shows the strong metal-support interaction between Cu and α-MoC(111) support. As a result, an extensive tensile strain is introduced in the Cu lattice due to α-MoC support, and Cu 3d band center shifts to Fermi level. However, the strong metal-support interaction does not lead to significant polarization of the Cu/α-MoC surface due to the less charge transfer from Mo to Cu. For the WGS reaction, small Cu particles on α-MoC(111) are likely to facilitate the reaction. At the interface of Cu-α-MoC(111), oxygen stabilizes the dissociated *H, which is benefit of HO scission. Then, the activity increases compared with Cu(111) surface. In general, small Cu particles on α-MoC support also have good activity for WGS reaction compared with Au deposition on α-MoC. Graphical abstract.

摘要

铜基催化剂已被广泛用于水煤气变换反应(WGS,CO + H₂O → CO₂ + H₂),α-MoC载体对该反应也表现出良好的性能。因此,采用密度泛函理论(DFT)对Cu/α-MoC上的水煤气变换反应进行了系统研究。DFT结果表明Cu与α-MoC(111)载体之间存在强金属-载体相互作用。结果,由于α-MoC载体的作用,Cu晶格中引入了广泛的拉伸应变,Cu 3d带中心向费米能级移动。然而,由于从Mo到Cu的电荷转移较少,强金属-载体相互作用并未导致Cu/α-MoC表面的显著极化。对于水煤气变换反应,α-MoC(111)上的小Cu颗粒可能促进该反应。在Cu-α-MoC(111)的界面处,氧使解离的*H稳定,这有利于H₂O的裂解。然后,与Cu(111)表面相比活性增加。总体而言,与α-MoC上沉积Au相比,α-MoC载体上的小Cu颗粒对水煤气变换反应也具有良好的活性。图形摘要。

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