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Silicon nanotubes with distinct bond lengths

机译:具有不同键长的硅纳米管

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In this paper, we extend both the rolled-up and the polyhedral models for single-walled silicon nanotubes with equal bond lengths to models having distinct bond lengths. The silicon nanotubes considered here are assumed to be formed by sp3 hybridization with different bond lengths so that the nanotube lattice is assumed to comprise only skew rhombi. Beginning with the three postulates that all bonds lying on the same helix are equal, all adjacent bond angles are equal, and all atoms are equidistant from a common axis of symmetry, we derive exact formulae for the polyhedral geometric parameters such as chiral angles, bond angles, radius and unit cell length. The polyhedral model presented here with distinct bond lengths includes both the rolled-up model with distinct bond lengths which arises from the first term of an asymptotic expansion, and an existing polyhedral model of the authors which assumes equal bond lengths. Finally, some molecular dynamics simulations are undertaken for comparison with the geometric model. These simulations start with equal bond lengths and then stabilize in such a way that two distinct bond lengths emerge. Keywords Silicon nanotubes - Geometry - Polyhedral model - Distinct bond lengths - Molecular dynamics simulations
机译:在本文中,我们将具有相同键长的单壁硅纳米管的汇总模型和多面体模型扩展为具有不同键长的模型。假设此处考虑的硅纳米管是通过具有不同键长的sp 3 杂交形成的,因此假定纳米管晶格仅包含斜斜菱形。从这三个假设开始,即位于同一螺旋上的所有键都是相等的,所有相邻的键角都相等,并且所有原子都与公共对称轴等距,我们得出了多面体几何参数的精确公式,例如手性角,键角度,半径和晶胞长度。这里呈现的具有不同键长的多面体模型既包括由渐近扩展的第一项产生的具有不同键长的卷起模型,也包括作者假定键长相等的现有多面体模型。最后,进行了一些分子动力学模拟,以与几何模型进行比较。这些模拟从相等的键长开始,然后以使出现两个不同的键长的方式稳定下来。硅纳米管-几何-多面体模型-独特的键长-分子动力学模拟

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