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Structural evolution of the silicon nanowire via molecular dynamics simulations: the double-strand atomic chain and the monatomic chain

机译:硅纳米线的结构演化通过分子动力学模拟:双链原子链和单原子链

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We conducted molecular dynamics simulations to investigate the dynamic structural evolution of the silicon nanowire under the axial tension load. The formations of the double-strand atomic chain and the monatomic chain were observed before the silicon nanowire is completely broken. During these two stages, the zigzag and linear configurations appear alternately. Every sudden decrease in the calculated force curve corresponds to a transition from the linear chain to the zigzag chain, which indicates the force relaxation due to the insert of the new atom into the chain. The present work reveals the structural evolution on the atomic scale and discusses the formation mechanism of the double-strand atomic chain and the monatomic chain. Our findings provide insight into the understanding of the dynamic structural evolution of the low-dimensional silicon materials, which has potential applications in the design and fabrication of the silicon-based nanodevices.
机译:我们进行了分子动力学模拟,以研究硅纳米线在轴向张力载荷下的动态结构演变。在硅纳米线完全断裂之前,观察到双链原子链和单原子链的形成。在这两个阶段中,锯齿形和线性配置交替出现。计算出的力曲线中的每一次突然减小都对应于从线性链到锯齿形链的过渡,这表明由于新原子插入链而导致的力松弛。本文揭示了原子尺度上的结构演化,并讨论了双链原子链和单原子链的形成机理。我们的发现提供了对低维硅材料的动态结构演变的理解的洞察力,其在基于硅的纳米器件的设计和制造中具有潜在的应用。

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