Estimating the adsorption energy of element 113 on a gold surface

A. Rusakov, Yu. A. Demidov, A. Zaitsevskii
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引用次数: 14

Abstract

We report first-principle based studies of element 113 (E113) interactions with gold aimed primarily at estimating the adsorption energy in thermochromatographic experiments. The electronic structure of E113-Aun systems was treated within the accurate shape-consistent small core relativistic pseudopotential framework at the level of non-collinear relativistic density functional theory (RDFT) with specially optimised Gaussian basis sets. We used gold clusters with up to 58 atoms to simulate the adsorption site on the stable Au(111) surface. Stabilization of the E113-Aun binding energy and the net Bader charge of E113 and the neighboring Au atoms with respect to n indicated the cluster size used was appropriate. The resulting adsorption energy estimates lie within the 1.0–1.2 eV range, substantially lower than previously reported values.
估算113元素在金表面的吸附能
我们报道了基于第一性原理的113元素(E113)与金相互作用的研究,主要目的是估计热色谱实验中的吸附能。利用特别优化的高斯基集,在非共线相对论密度泛函理论(RDFT)水平上,在精确形状一致的小核相对论伪势框架内处理E113-Aun系统的电子结构。我们使用多达58个原子的金簇来模拟稳定Au(111)表面的吸附位点。E113- aun结合能的稳定以及E113和邻近Au原子的净贝德电荷相对于n的变化表明所使用的簇大小是合适的。由此得出的吸附能估计在1.0-1.2 eV范围内,大大低于之前报道的值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Central European Journal of Physics
Central European Journal of Physics 物理-物理:综合
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审稿时长
3.3 months
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