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Molecular Dynamics Studies of the Kinetics of Phase Changes in Clusters IV: Crystal Nucleation from Molten (NaCl)_(256) and (NaCl)_(500) Clusters

机译:团簇相变动力学的分子动力学研究IV:熔融(NaCl)_(256)和(NaCl)_(500)团簇的晶体成核

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摘要

Molecular dynamics computer simulation based on the Born-Mayer-Huggins potential function has been carried out to study the effects of cluster size and temperature on the nucleation rate of sodium chloride clusters in the temperature range of 580 K to 630 K. Clusters with 256 and 500 NaCl molecules have been studied and the results have been compared with those obtained from 108 molecule clusters. The melting point (MP) of the dusters were observed to increase with the size of the clusters and can be well described by a linear equation MP = 1107(37) -1229(23) N~(-1/3)(N is the number of molecules in the cluster). The nucleation rate was found to decrease with increasing the cluster size or temperature. Various nucleation theories have been used to interpret the nucleation rates obtained from this molecular dynamics simulation. It is possible to use a constant diffuse interface thickness to interpret the nucleation rate from the diffuse interface theory in the temperature range of this study. However, the interfacial free energy estimated from classical nucleation theory and diffuse interface theory increases too fast with increasing the temperature while that from Gran-Gunton theory does not change with changing temperatures. The sizes of critical nuclei estimated from all the theories are smaller than those estimated from our simulations.
机译:进行了基于Born-Mayer-Huggins势函数的分子动力学计算机模拟,研究了簇大小和温度对580 K至630 K温度范围内氯化钠簇的成核速率的影响。256和256的簇研究了500个NaCl分子,并将结果与​​从108个分子簇中获得的结果进行了比较。观察到the子的熔点(MP)随团簇尺寸的增加而增加,可用线性方程MP = 1107(37)-1229(23)N〜(-1/3)(N为簇中的分子数)。发现成核速率随团簇尺寸或温度增加而降低。各种成核理论已被用来解释从这种分子动力学模拟获得的成核速率。在本研究的温度范围内,可以使用恒定的扩散界面厚度来根据扩散界面理论解释成核速率。然而,经典成核理论和扩散界面理论估计的界面自由能随着温度的升高而增加得太快,而Gran-Gunton理论的界面自由能却不会随着温度的变化而改变。根据所有理论估计的临界核的尺寸小于根据我们的模拟估计的临界核的尺寸。

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