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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Adsorption of Ethylene, Vinyl, Acetic Acid, and Acetate Species on PdAu(111) and PdAu(100) Surface Alloys: A Cluster Model Study
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Adsorption of Ethylene, Vinyl, Acetic Acid, and Acetate Species on PdAu(111) and PdAu(100) Surface Alloys: A Cluster Model Study

机译:PdAu(111)和PdAu(100)表面合金对乙烯,乙烯基,乙酸和乙酸盐物种的吸附:聚类模型研究

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摘要

The adsorption properties on PdAu surface alloys of ethylene and acetic acid molecules along with their derived vinyl and acetate surface species have been investigated by density functional theory calculations. Large clusters have been used to model second-neighbor Pd monomer pair ensembles on PdAu(100) and PdAu(111) surface alloys. Ethylene and acetic acid are weakly bonded to the Pd monomers, while vinyl and acetate are strongly bonded to both Pd and Au atoms being very stable surface species. The ligand effect of the gold atoms surrounding the Pd monomers has been shown to be stronger in the more dense PdAu(111) surface alloy. Cluster model results are in good agreement with experimental evidence providing important insight on the adsorption bonding modes, the assignment of the infrared features, and the preferred adsorption sites.
机译:通过密度泛函理论计算研究了乙烯和乙酸分子在PdAu表面合金上的吸附性能,以及它们衍生的乙烯基和乙酸盐表面物种。大簇已被用于模拟PdAu(100)和PdAu(111)表面合金上的第二邻居Pd单体对。乙烯和乙酸与Pd单体的结合较弱,而乙烯基和乙酸酯与Pd和Au的原子均具有较强的结合力,这是非常稳定的表面物质。在更致密的PdAu(111)表面合金中,围绕Pd单体的金原子的配体效应已显示出更强的作用。团簇模型的结果与实验证据非常吻合,提供了有关吸附键合模式,红外特征的分配以及首选吸附位点的重要见解。

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