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冰棱柱面界面生长过程中几何粗糙结构的各向异性:改进的HO六点模型的发展及分子动力学模拟

Anisotropy in geometrically rough structure of ice prismatic plane interface during growth: Development of a modified six-site model of HO and a molecular dynamics simulation.

作者信息

Nada Hiroki

机构信息

National Institute of Advanced Industrial Science and Technology (AIST), 16-1 Onogawa, Tsukuba, Ibaraki 305-8569, Japan.

出版信息

J Chem Phys. 2016 Dec 28;145(24):244706. doi: 10.1063/1.4973000.

DOI:10.1063/1.4973000
PMID:28049310
Abstract

This paper presents a modified version of the six-site model of HO [H. Nada and J. P. J. M. van der Eerden, J. Chem. Phys. 118, 7401 (2003)]. Although the original six-site model was optimized by assuming the cut-off of the Coulomb interaction at an intermolecular distance of 10 Å, the modified model is optimized by using the Ewald method for estimating the Coulomb interaction. Molecular dynamics (MD) simulations of an ice-water interface suggest that the melting point of ice at 1 atm in the modified model is approximately 274.5 K, in good agreement with the real melting point of 273.15 K. MD simulations of bulk ice and water suggest that the modified model reproduces not only the structures and density curves of ice and water, but also the diffusion coefficient of water molecules in water near the melting point at 1 atm. Using the modified model, a large-scale MD simulation of the growth at an ice-water interface of the prismatic plane is performed to elucidate the anisotropy in the interface structure during growth. Simulation results indicate that the geometrical roughness of the ice growth front at the interface is greater in the c-axis direction than in the direction normal to the c-axis when it is analyzed along the axes parallel to the prismatic plane. In addition, during the growth at the interface, the transient appearance of specific crystallographic planes, such as a {202¯1} pyramidal plane, occurs preferentially at the ice growth front. The effect of different ensembles with different simulation systems on the anisotropy in the interface structure is also investigated.

摘要

本文提出了HO六位点模型[H. Nada和J. P. J. M. van der Eerden,《化学物理杂志》118, 7401 (2003)]的一个改进版本。尽管原始的六位点模型是通过假设在分子间距离为10 Å时库仑相互作用的截止来优化的,但改进后的模型是通过使用埃瓦尔德方法来估计库仑相互作用进行优化的。冰水界面的分子动力学(MD)模拟表明,在改进模型中1个大气压下冰的熔点约为274.5 K,与实际熔点273.15 K吻合良好。块状冰和水的MD模拟表明,改进模型不仅再现了冰和水的结构及密度曲线,还再现了1个大气压下接近熔点时水分子在水中的扩散系数。使用改进模型,对棱柱面冰水界面生长进行了大规模MD模拟,以阐明生长过程中界面结构的各向异性。模拟结果表明,当沿平行于棱柱面的轴进行分析时,界面处冰生长前沿在c轴方向的几何粗糙度大于垂直于c轴的方向。此外,在界面生长过程中,特定晶面(如{202¯1}锥面)的瞬态出现优先发生在冰生长前沿。还研究了不同模拟系统的不同系综对界面结构各向异性的影响。

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Anisotropy in geometrically rough structure of ice prismatic plane interface during growth: Development of a modified six-site model of HO and a molecular dynamics simulation.冰棱柱面界面生长过程中几何粗糙结构的各向异性:改进的HO六点模型的发展及分子动力学模拟
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