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首页> 外文期刊>Journal of Catalysis >Comparing the catalytic activity of the water gas shift reaction on Cu(321) and Cu(111) surfaces: Step sites do not always enhance the overall reactivity
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Comparing the catalytic activity of the water gas shift reaction on Cu(321) and Cu(111) surfaces: Step sites do not always enhance the overall reactivity

机译:比较水煤气变换反应在Cu(321)和Cu(111)表面上的催化活性:台阶部位并不总是能提高整体反应活性

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摘要

A Density Functional Theory based first-principles kinetic Monte Carlo (kMC) study of the water gas shift reaction on the stepped Cu(321) surface is presented. We use the recently developed graph-theoretical kMC approach coupled with cluster expansion Hamiltonians to model the coverage-dependent energy barriers for the different surface processes, including adsorption/desorption, diffusion and other elementary chemical reactions, totalling 36 elementary steps, which allow two possible competitive mechanisms: surface redox and associative COOH. All results are compared to a previous kMC study on Cu(111). Both mechanisms are observed for Cu(321) surface with different extensions, whereas the associative COOH one was the dominant for Cu(111). The present study shows that, in spite of encompassing lower activation energy barriers, stepped surfaces do not necessarily have an overall larger catalytic activity. Coverage effects and the significant contribution of some of the reverse processes are behind this behaviour. (C) 2016 Elsevier Inc. All rights reserved.
机译:提出了基于密度泛函理论的第一原理动力学蒙特卡罗(kMC)研究阶梯状Cu(321)表面上的水煤气变换反应。我们使用最近开发的图论kMC方法,结合簇扩展哈密顿量,对不同表面过程(包括吸附/解吸,扩散和其他基本化学反应)的依赖于覆盖率的能垒进行建模,总共36个基本步骤,这允许两个可能的步骤竞争机制:表面氧化还原和缔合COOH。将所有结果与先前关于Cu(111)的kMC研究进行比较。两种机制都观察到具有不同延伸的Cu(321)表面,而缔合COOH是Cu(111)的主导。本研究表明,尽管包含较低的活化能垒,但阶梯状表面不一定具有整体较大的催化活性。行为的背后是覆盖效果和某些反向过程的重大贡献。 (C)2016 Elsevier Inc.保留所有权利。

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