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Size-sensitive Young's modulus of kinked silicon nanowires

机译:扭结硅纳米线的尺寸敏感杨氏模量

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We perform both classical molecular dynamics simulations and beam model calculations to investigate the Young's modulus of kinked silicon nanowires (KSiNWs). The Young's modulus is found to be highly sensitive to the arm length of the kink and is essentially inversely proportional to the arm length. The mechanism underlying the size dependence is found to be the interplay between the kink angle potential and the arm length potential, where we obtain an analytic relationship between the Young's modulus and the arm length of the KSiNW. Our results provide insight into the application of this novel building block in nanomechanical devices.
机译:我们执行经典的分子动力学模拟和束模型计算,以研究扭结的硅纳米线(KSiNWs)的杨氏模量。发现杨氏模量对纽结的臂长高度敏感,并且与臂长基本成反比。发现尺寸依赖性的机理是扭结角电位和臂长电位之间的相互作用,在这里我们获得了杨氏模量和KSiNW臂长之间的解析关系。我们的结果提供了对这种新型构件在纳米机械设备中的应用的见识。

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