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The structure, energetics and thermal evolution of SiGe nanotubes

机译:SiGe纳米管的结构,能级和热演化

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The structure, energetics and thermal behavior of all the SiGe nanotubes in armchair and zigzag structures (n = 4-10) and two atomic arrangement types are investigated using the ab initio method and classical molecular dynamics simulations. Gearlike and puckering configurations of SiGe nanotubes are obtained. The simulation results indicate that large-diameter nanotubes are more stable than small-diameter ones. Moreover, the type 1 (alternating atom arrangement type) zigzag nanotubes are always more energetically favorable than the type 2 (layered atom arrangement type) zigzag nanotubes. During the melting process, the melting-like structural transformations from the initial nanotube to the compact nanowire take place first, and then the compact nanowires are changed into agglomerate structures at higher temperature. It is also found that the melting-like temperatures of Ge-substituted silicon nanotubes decrease with increase of the Ge concentration.
机译:使用从头算方法和经典的分子动力学模拟,研究了扶手椅和之字形结构(n = 4-10)中所有SiGe纳米管的结构,能量和热行为以及两种原子排列类型。获得了SiGe纳米管的齿轮状和起皱构造。仿真结果表明,大直径纳米管比小直径纳米管更稳定。此外,类型1(交替原子排列类型)的曲折纳米管总是比类型2(层状原子排列类型)的曲折纳米管在能量上更有利。在熔化过程中,首先发生从初始纳米管到致密纳米线的类似熔化的结构转变,然后在较高温度下将致密纳米线转变为团聚结构。还发现Ge取代的硅纳米管的熔融状温度随着Ge浓度的增加而降低。

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