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首页> 外文期刊>Journal of cluster science >A Theoretical Study of the Water-Gas-Shift Reaction on Cu6TM (TM = Co, Ni, Cu, Rh, Pd, Ag, Ir, Pt, Au) Clusters
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A Theoretical Study of the Water-Gas-Shift Reaction on Cu6TM (TM = Co, Ni, Cu, Rh, Pd, Ag, Ir, Pt, Au) Clusters

机译:Cu6TM(TM = Co,Ni,Cu,Rh,Pd,Ag,Ir,Pt,Au)团簇上水煤气变换反应的理论研究

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We perform density-functional theory calculations to investigate the water-gas-shift (WGS) reaction on Cu6TM (TM = Co, Ni, Cu, Rh, Pd, Ag, Ir, Pt, Au) clusters through redox, carboxyl, and formate mechanisms, which correspond to CO* + O* -> CO2 (g), CO* + OH* -> COOH* -> CO2 (g) + H*, CO* + H* + O* -> CHO* + O* -> HCOO** -> CO2(g) + H* respectively. An energetic span model is used to estimate the efficiency of the three mechanisms of different Cu6TM. It finds that for groups 9 and 10, carboxyl mechanism is the predominant mechanism in the three. While for Cu6TM (Cu, Ag, Au), it finds that the formate mechanism form the TDI and TDTS. Furthermore, the turnover frequency calculations are done for every Cu6TM cluster. The results show that Cu6Co is the best catalyst for WGS reaction. Finally, to understand the high catalytic activity of the Cu6Co cluster, the nature of the interaction between adsorbate and substrate is also analyzed by the detailed electronic local density of states. These findings enrich the applications of Cu-based materials to the high activity catalytic field.
机译:我们执行密度泛函理论计算以研究通过氧化还原,羧基和甲酸酯在Cu6TM(TM = Co,Ni,Cu,Rh,Pd,Ag,Ir,Pt,Au)团簇上的水煤气变换(WGS)反应对应于CO * + O *-> CO2(g),CO * + OH *-> COOH *-> CO2(g)+ H *,CO * + H * + O *-> CHO * + O的机理*-> HCOO **-> CO2(g)+ H *。使用能量跨度模型来估计不同Cu6TM的三种机制的效率。发现对于第9和第10组,羧基机理是这三个中的主要机理。而对于Cu6TM(Cu,Ag,Au),它发现甲酸形成机理是TDI和TDTS。此外,针对每个Cu6TM簇进行周转频率计算。结果表明,Cu6Co是WGS反应的最佳催化剂。最后,为了了解Cu6Co团簇的高催化活性,还通过详细的电子局部态密度分析了被吸附物与底物之间相互作用的性质。这些发现丰富了铜基材料在高活性催化领域的应用。

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