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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Molecular Dynamics Simulations of Au Penetration through Alkanethiol Monolayers on the Au(111) Surface
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Molecular Dynamics Simulations of Au Penetration through Alkanethiol Monolayers on the Au(111) Surface

机译:Au(111)表面上通过烷基酚单分子膜渗透Au的分子动力学模拟

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摘要

We present results on the energetics and dynamics of Au atoms interacting with alkanethiol monolayers using molecular dynamics in conjunction with quantum-mechanical calculations. Using a classical force field calibrated by first-principle calculations, we have found that under certain physical conditions, gold atoms can penetrate the molecular monolayer to join the underlying Au(111) surface. We have investigated the dependence of surface coverage and temperature, and have found that our results agree well with available experimental observations. The electronic structure of the system, the potential energy as a function of penetration depth, and the charge transfer at the interface between the molecules and the Au(111) surface are analyzed to determine the potential implications for experiments.
机译:我们目前的结果与分子动力学结合量子力学计算的金原子与烷硫醇单分子层相互作用的能量和动力学有关。使用通过第一原理计算校准的经典力场,我们发现在某些物理条件下,金原子可以穿透分子单分子层以连接下面的Au(111)表面。我们已经研究了表面覆盖率和温度的依赖性,并且发现我们的结果与可用的实验观察非常吻合。分析系统的电子结构,势能与渗透深度的关系以及分子与Au(111)表面之间的界面处的电荷转移,以确定对实验的潜在影响。

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