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卤化物固溶体的热输运性质:实验与平衡分子动力学对比

Thermal transport properties of halide solid solutions: Experiments vs equilibrium molecular dynamics.

作者信息

Gheribi Aïmen E, Salanne Mathieu, Chartrand Patrice

机构信息

CRCT-Centre for Research in Computational Thermochemistry, Department of Chemical Engineering,École Polytechnique, P.O. Box 6079, Station Downtown, Montréal, Québec H3C 3A7, Canada.

Sorbonne Universits, UPMC Univ Paris 06, UMR 8234, PHENIX, F-75005 Paris, France.

出版信息

J Chem Phys. 2015 Mar 28;142(12):124109. doi: 10.1063/1.4915524.

Abstract

The composition dependence of thermal transport properties of the (Na,K)Cl rocksalt solid solution is investigated through equilibrium molecular dynamics (EMD) simulations in the entire range of composition and the results are compared with experiments published in recent work [Gheribi et al., J. Chem. phys. 141, 104508 (2014)]. The thermal diffusivity of the (Na,K)Cl solid solution has been measured from 473 K to 823 K using the laser flash technique, and the thermal conductivity was deduced from critically assessed data of heat capacity and density. The thermal conductivity was also predicted at 900 K in the entire range of composition by a series of EMD simulations in both NPT and NVT statistical ensembles using the Green-Kubo theory. The aim of the present paper is to provide an objective analysis of the capability of EMD simulations in predicting the composition dependence of the thermal transport properties of halide solid solutions. According to the Klemens-Callaway [P. G. Klemens, Phys. Rev. 119, 507 (1960) and J. Callaway and H. C. von Bayer, Phys. Rev. 120, 1149 (1960)] theory, the thermal conductivity degradation of the solid solution is explained by mass and strain field fluctuations upon the phonon scattering cross section. A rigorous analysis of the consistency between the theoretical approach and the EMD simulations is discussed in detail.

摘要

通过平衡分子动力学(EMD)模拟研究了(Na,K)Cl岩盐固溶体热输运性质的成分依赖性,模拟范围涵盖了整个成分区间,并将结果与近期工作[Gheribi等人,《化学物理杂志》141, 104508 (2014)]中发表的实验进行了比较。利用激光闪光技术测量了(Na,K)Cl固溶体在473 K至823 K范围内的热扩散率,并根据经过严格评估的热容和密度数据推导出热导率。还使用格林 - 库博理论,通过在NPT和NVT统计系综中进行的一系列EMD模拟,预测了900 K时整个成分范围内的热导率。本文的目的是对EMD模拟预测卤化物固溶体热输运性质成分依赖性的能力进行客观分析。根据克莱门斯 - 卡拉韦[P. G. 克莱门斯,《物理评论》119, 507 (1960)以及J. 卡拉韦和H. C. 冯·拜尔,《物理评论》120, 1149 (1960)]理论,固溶体的热导率降解是由声子散射截面处的质量和应变场波动来解释的。详细讨论了理论方法与EMD模拟之间一致性的严格分析。

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