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准晶表面碳氢化合物薄膜的结构与拓扑转变

Structures and topological transitions of hydrocarbon films on quasicrystalline surfaces.

作者信息

Setyawan Wahyu, Diehl Renee D, Curtarolo Stefano

机构信息

Department of Mechanical Engineering and Materials Science, Duke University, Durham, North Carolina 27708, USA.

出版信息

Phys Rev Lett. 2009 Feb 6;102(5):055501. doi: 10.1103/PhysRevLett.102.055501. Epub 2009 Feb 3.

Abstract

Lubricants can affect quasicrystalline coating surfaces by modifying the commensurability of the interfaces. We report results of the first computer simulation studies of physically adsorbed hydrocarbons on a quasicrystalline surface: methane, propane, and benzene on decagonal Al-Ni-Co. The grand canonical Monte Carlo method is employed, using novel embedded-atom method potentials generated from ab initio calculations, and standard hydrocarbon interactions. The resulting adsorption isotherms and calculated structures show the films' evolution from submonolayer to condensation. We discover the presence and absence of the fivefold to sixfold topological transition, for benzene and methane, respectively, in agreement with a previously formulated phenomenological rule based on adsorbate-substrate size mismatch.

摘要

润滑剂可通过改变界面的协调性来影响准晶涂层表面。我们报告了首次对在准晶表面物理吸附的碳氢化合物进行计算机模拟研究的结果:在十边形Al-Ni-Co上吸附的甲烷、丙烷和苯。采用巨正则蒙特卡罗方法,使用从头算计算生成的新型嵌入原子方法势以及标准的碳氢化合物相互作用。所得的吸附等温线和计算出的结构显示了薄膜从亚单层到凝聚态的演变。我们分别发现了苯和甲烷存在和不存在五重到六重拓扑转变,这与之前基于吸附质 - 底物尺寸不匹配制定的唯象规则一致。

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