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首页> 外文期刊>The Journal of Chemical Physics >Predicting large area surface reconstructions using molecular dynamics methods
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Predicting large area surface reconstructions using molecular dynamics methods

机译:使用分子动力学方法预测大面积表面重建

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In this paper we discuss a new simulation method that can be used to predict preferred surface reconstructions of model systems by Molecular Dynamics (MD). The method overcomes the limitations imposed by periodic boundary conditions for finite boundary MD simulations which can normally prevent reconstructions. By simulating only the reconstructed surface layer and by removing the periodic boundary effects and the free energy barriers to reconstruction, the method allows surfaces to reconstruct to a preferred structure. We test the method on three types of surfaces: (i) the Au(100) and Pt(100) hexagonally reconstructed surface, (ii) the Au(111) herringbone surfaces, and (iii) the triangularly reconstructed Ag surface layer on a Pt(111) substrate and find the method readily finds lower surface energy reconstructions as preferred by the potential.
机译:在本文中,我们讨论了一种新的仿真方法,该方法可用于通过分子动力学(MD)预测模型系统的首选曲面重构。该方法克服了周期性边界条件对有限边界MD模拟的限制,该限制通常可以防止重建。通过仅模拟重建的表面层,并消除周期性的边界效应和重建的自由能壁垒,该方法允许将表面重建为首选结构。我们在三种类型的表面上测试该方法:(i)Au(100)和Pt(100)六角形重构表面,(ii)Au(111)人字形表面,以及(iii)三角形重构的Ag表面Pt(111)基板并发现该方法很容易找到较低的表面能重建,如势能所优选。

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