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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Molecular dynamics simulations of melting and sintering of Si nanoparticles: a comparison of different force fields and computational models
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Molecular dynamics simulations of melting and sintering of Si nanoparticles: a comparison of different force fields and computational models

机译:Si纳米粒子熔融和烧结的分子动力学模拟:不同力场和计算模型的比较

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摘要

Melting and sintering of silicon nanoparticles are investigated by means of classical molecular dynamics simulations to disclose the dependence of modelling on the system type, the simulation procedure and interaction potential. The capability of our parametrization of a reactive force field ReaxFF to describe such processes is assessed through a comparison with formally simpler Stillinger-Weber and Tersoff potentials, which are frequently used for simulating silicon-based materials. A substantial dependence of both the predicted melting point and its variation as a function of the nanoparticle size on the simulation model is also highlighted. The outcomes of the molecular dynamics simulations suggest that the trend of the nanoparticulate sintering/coalescence time vs. temperature could provide a valid tool to determine the melting points of nanoparticles theoretically/experimentally.
机译:通过经典的分子动力学模拟研究了硅纳米颗粒的熔融和烧结,以便在系统类型,模拟程序和相互作用潜力上公开建模的依赖性。 通过与正式更简单的STERER-WEBER和TESSOFF电位的比较来评估我们对反应力场的参数化以描述这些过程的能力,这些方法经常用于模拟基于硅的材料。 还突出了对仿真模型上的纳米颗粒尺寸的预测熔点及其变化的实质性依赖性。 分子动力学模拟的结果表明,纳米颗粒烧结/聚结时间与温度的趋势可以提供有效的工具,从理论上/实验地提供纳米颗粒的熔点。

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