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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >First-Principles Study of C-2 Oxygenates Synthesis Directly from Syngas over CoCu Bimetallic Catalysts
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First-Principles Study of C-2 Oxygenates Synthesis Directly from Syngas over CoCu Bimetallic Catalysts

机译:CoCu双金属催化剂直接由合成气合成C-2含氧化合物的第一性原理研究

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Density functional theory (DFT) calculations were used to study C-2 oxygenate from syngas over bimetallic Co/Cu catalysts. The thermodynamics and kinetics for all possible elementary steps involved in the formation of C-2 oxygenate from syngas have been investigated on both pure and Cu-doped Co(0001) surfaces. By comparing the results on two surfaces, the role of copper in improving the selectivity toward C-2 oxygenates has been identified as two aspects: (1) controlling the Co ensemble size and blocking the active sites for C-O bond cleavage, which results in inhibition of CHx coupling to hydrocarbons; (2) providing undissociated CO/HCO as well as reducing the barriers for HCO insertion toward the formation of oxygenate precursors. With the combination of the mechanistic study and the charge analysis on the bimetallic surface, we conclude that the nature of the copper promotion is mainly a geometric effect rather than an electronic effect.
机译:密度泛函理论(DFT)计算用于研究双金属Co / Cu催化剂上合成气中的C-2含氧化合物。已经研究了在纯表面和Cu掺杂的Co(0001)表面上涉及从合成气形成C-2含氧化合物的所有可能的基本步骤的热力学和动力学。通过比较两个表面上的结果,铜在改善对C-2含氧化合物的选择性中的作用已被确定为两个方面:(1)控制Co团大小并阻断CO键断裂的活性位点,从而导致抑制作用CHx与烃的偶联; (2)提供未离解的CO / HCO并减少HCO插入形成氧化物前体的障碍。通过对双金属表面的机理研究和电荷分析相结合,我们得出结论,铜促进的性质主要是几何效应而不是电子效应。

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