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首页> 外文期刊>The European physical journal, B. Condensed matter physics >Ag deposited onto the (100) surface in silicon studied by Density Functional Theory and Classical Molecular Dynamics
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Ag deposited onto the (100) surface in silicon studied by Density Functional Theory and Classical Molecular Dynamics

机译:通过密度泛函理论和经典分子动力学研究将Ag沉积在硅的(100)表面上

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摘要

Numerous theoretical studies have been dedicated to Ag deposited on Si(111) and the properties of this system are now well assessed. On the contrary, the interface Ag/Si(100) is more elusive and several problems of this system have not been satisfactorily solved yet. In this work the Density Functional theory with GGA corrections and Molecular Dynamics simulations with classical interatomic potentials have been applied to the evaluation of adsorption of Ag on Si(100). Small clusters representing a fragment of the exposed surface are used in GGA calculations to study the chemistry of Ag/Si bonds in dependence of the shape, bulk-terminated or dimerized, of the Si(100) surface. Isothermal molecular dynamics simulations describe the motions of the diffusing adatoms in a temperature range from T = 10 to 1000 K. The results indicate that the Ag atoms are adsorbed in a cave site among surface atoms, a feature consistent with experimental observations. Furthermore it is shown that, though there are no contradiction between the two methods, the difference between the stationary GGA and the dynamical MD evaluation is noticeable. This result has both practical and conceptual relevance.
机译:大量的理论研究致力于沉积在Si(111)上的Ag,现在对该系统的性能进行了很好的评估。相反,界面Ag / Si(100)更加难以捉摸,该系统的一些问题尚未得到令人满意的解决。在这项工作中,具有GGA校正的密度泛函理论和具有经典原子间电势的分子动力学模拟已应用于评估Ag在Si(100)上的吸附。 GGA计算中使用代表暴露表面片段的小簇来研究Ag / Si键的化学性质,该化学键取决于Si(100)表面的形状(本体封端或二聚化)。等温分子动力学模拟描述了扩散的原子在T = 10到1000 K的温度范围内的运动。结果表明,Ag原子被吸附在表面原子之间的洞穴中,这一特征与实验观察结果一致。此外还表明,尽管这两种方法之间没有矛盾,但是静态GGA与动态MD评估之间的差异是显而易见的。这个结果在实践和概念上都有关系。

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