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Oxidation state of oxide supported nanometric gold

机译:氧化物负载纳米金的氧化态

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We address the structure gap between surface science and catalysis studies of the activity of oxide supported Au clusters. Reviewing the recent literature we find that surface science investigations often deal with highly reduced systems that have anionic Au clusters and oxygen vacancies in the support. The catalysis studies on the other hand consistently report on oxidized samples with traces of cationic Au. Performing density functional theory calculations we show that the effect of oxidation of oxide supported Au clusters, Au_8/MgO, Au_7/TiO2 and Au_(10)/TiO2, is a strong increase in the Au/support adhesion energy and a great structural transformation of the clusters. Some of the Au atoms become positively charged (cationic) in the oxidation process as evidenced indirectly by calculated vibrational stretch frequency shifts of adsorbed CO.
机译:我们解决了表面科学与氧化物负载的金团簇活性的催化研究之间的结构空白。回顾最近的文献,我们发现表面科学研究通常涉及高度还原的系统,这些系统具有阴离子性金簇和支持体中的氧空位。另一方面,催化研究一致地报道了带有痕量阳离子金的氧化样品。进行密度泛函理论计算,我们发现,氧化物负载的金团簇Au_8 / MgO,Au_7 / TiO2和Au_(10)/ TiO2的氧化作用大大增强了Au /载体的附着能,并极大地改变了结构。集群。一些Au原子在氧化过程中带正电(阳离子),这可以通过计算得出的吸附式CO的振动拉伸频率位移间接证明。

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