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Layering transition in confined silicon

机译:在限制硅分层过渡

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摘要

The structure of quasi-2D liquid silicon confined to slit nanopores has been investigated using molecular dynamics (MD) simulations. An obvious structural change from a low-density low-coordinated liquid to a high-density highly coordinated liquid has been found in the confined silicon with the increase of the slit size. This kind of structural transition results from layering in the confined silicon, which disappears with the increase of temperature. In the process of layering transition, the coordination distribution of quasi-2D liquid undergoes an evolutionary process from the initial non-uniform distribution to the final uniform distribution. In addition, our results also indicate that the increase of pressure will also induce a layering transition in the confined silicon.
机译:quasi-2D液体硅结构的局限狭缝纳米孔已经调查使用分子动力学(MD)模拟。从低密度结构变化low-coordinated液体高密度高度协调在液体被发现硅的增加狭缝大小。的结构性转变的结果分层的限制硅随着温度的增加消失。分层过渡的过程中,协调分配quasi-2D液体经历了一个进化的过程最初的不均匀分布到最终均匀分布。还表明,压力会增加也引起分层过渡的局限硅。

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