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用于熔融硝酸锂、硝酸钠和硝酸钾的可极化原子间势的开发。

Development of a Polarizable Interatomic Potential for Molten Lithium, Sodium, and Potassium Nitrate.

作者信息

Maxwell Christopher I, Saoudi Mouna, Pencer Jeremy

机构信息

Canadian Nuclear Laboratories, Chalk River Laboratories, Chalk River, ON K0J 1J0, Canada.

出版信息

J Phys Chem B. 2020 Jun 11;124(23):4751-4761. doi: 10.1021/acs.jpcb.0c02245. Epub 2020 Jun 1.

DOI:10.1021/acs.jpcb.0c02245
PMID:32401516
Abstract

A polarizable interatomic potential is developed for atomistic simulations of molten MNO (M = Li, Na, K) salts. The potential is parametrized using a force matching method relying on the adjustment of parameters such that density functional theory generated forces, stress tensors, and dipole moments are reproduced. Simulations conducted using the new potential are used to estimate physical parameters of the melt, which are then compared with available experimental results. The average calculated densities of NaNO and KNO are within 2% of the experimental value within the temperature range studied, while that of LiNO is within 3%. Thermal conductivities and viscosities are estimated using equilibrium calculations and the Green-Kubo method. The thermal conductivity values of NaNO and KNO are found to match well with experimental data, while that of LiNO is approximately 20% larger than experimentally determined values throughout the temperature ranges simulated. The calculated viscosities are also in good agreement with experimentally determined values. The (NaK)NO mixture is also investigated, with densities, thermal conductivities, and viscosities determined and compared with experimentally determined values where available. Additionally, radial and angular distribution function data is presented for all salts, revealing details of the atom-level structures present in the melts. We have found that the new interatomic potential is effective for atom scale modeling of the physical properties of molten nitrate salts.

摘要

开发了一种可极化的原子间势,用于熔融MNO(M = Li、Na、K)盐的原子模拟。该势通过力匹配方法进行参数化,该方法依赖于参数调整,以使密度泛函理论生成的力、应力张量和偶极矩得以重现。使用新势进行的模拟用于估算熔体的物理参数,然后将其与现有的实验结果进行比较。在所研究的温度范围内,计算得到的NaNO和KNO的平均密度与实验值的偏差在2%以内,而LiNO的偏差在3%以内。热导率和粘度通过平衡计算和格林-库博方法进行估算。发现NaNO和KNO的热导率值与实验数据匹配良好,而在整个模拟温度范围内,LiNO的热导率比实验测定值大约大20%。计算得到的粘度也与实验测定值高度吻合。还对(NaK)NO混合物进行了研究,测定了其密度、热导率和粘度,并与现有的实验测定值进行了比较。此外,还给出了所有盐的径向和角分布函数数据,揭示了熔体中原子级结构的细节。我们发现,新的原子间势对于熔融硝酸盐盐物理性质的原子尺度建模是有效的。

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