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Observable consequences of formation of Au anions from deposition of Au atoms on ultrathin oxide films

机译:在超薄氧化膜上沉积金原子形成金阴离子可观察到的结果

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Charging of metal atoms or clusters on oxide surfaces has important consequences on their chemical and physical properties. Recently it is has been shown that negatively charged gold atoms and clusters form spontaneously from neutral Au atoms deposited on ultrathin MgO films. The formation of anions on the surface remains difficult to prove experimentally. Also theoretically, the discrimination between neutral and charged adsorbed species is not straightforward. In this paper we perform an accurate analysis of the observable consequences of the formation of Au anions on an oxide surface. To this end we consider the following properties: spin distribution, density of states, Bader charges, substrate relaxation, simulated scanning tunneling microscopy images, work function changes, CO vibrational frequency, electric field effects, and core level shifts. Most of these properties are accessible experimentally, at least in principle. Taken individually, these properties do not necessarily provide conclusive evidence about the charged nature of the adsorbate. Taken together, they offer a complete and unambiguous characterization of the formation of Au anions.
机译:氧化物表面上的金属原子或金属簇带电对其化学和物理性质产生重要影响。最近已经显示出,带负电的金原子和团簇由沉积在超薄MgO薄膜上的中性金原子自发形成。表面上阴离子的形成仍然难以通过实验证明。同样从理论上讲,区分中性和带电的吸附物质并不简单。在本文中,我们对在氧化物表面形成金阴离子的可观察到的结果进行了准确的分析。为此,我们考虑以下特性:自旋分布,状态密度,巴德电荷,衬底弛豫,模拟扫描隧道显微镜图像,功函数变化,CO振动频率,电场效应和核心能级位移。这些特性中的大多数至少在原理上可以通过实验获得。单独考虑,这些性质不一定提供有关吸附物带电性质的确凿证据。综上所述,它们对金阴离子的形成提供了完整而明确的表征。

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