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Investigation of the local structures and transport properties of quaternary molten alkali chloride systems by MD simulations for liquid metal batteries  ( EI收录)  

文献类型:期刊文献

英文题名:Investigation of the local structures and transport properties of quaternary molten alkali chloride systems by MD simulations for liquid metal batteries

作者:Sun, Ze[1]; Cai, Liwei[1]; Ni, Haiou[1]; Lu, Guimin[1]; Song, Xingfu[1]; Yu, Jianguo[1]

机构:[1] National Engineering Research Center for Integrated Utilization of Salt Lake Resource, East China University of Science and Technology, Shanghai, 200237, China

年份:2018

卷号:48

期号:10

起止页码:1175

外文期刊名:Journal of Applied Electrochemistry

收录:EI(收录号:20183805829513)

语种:英文

外文关键词:Shear viscosity - Electric batteries - Ionic conductivity - Liquid metals - Electrolytes - Mixtures - Fused salts - Chlorine compounds - Diffusion in liquids

摘要:Abstract: When selecting a suitable molten salt electrolyte system for liquid metal batteries (LMBs), it is crucial to have an accurate understanding of the local structures and transport properties of molten salt mixtures. In this study, molecular dynamics simulations have been employed to calculate such properties of (Li, Na, K, Cs)Cl and (Li, K, Rb, Cs)Cl quaternary molten alkali chloride systems at 700–1000K using the Born–Mayer–Huggins potential. The results show that the density and shear viscosity of the molten salt electrolyte increase when the average cation radius increases, while the self-diffusion coefficient and ionic conductivity decrease. Increasing the temperature in LMBs can enhance the diffusibility and electroconductivity of the molten salt electrolyte and reduce the density and shear viscosity to a certain extent. Overall, the calculated results provide a useful reference for the selection of molten salt electrolytes with reasonable composition to optimize the electrochemical performance of LMBs. Graphical Abstract: The molten salt mixtures as the electrolytes have a crucial effect on the performances of LMBs. The transport properties such as ionic conductivity, shear viscosity and self-diffusion capacity of quaternary molten salt systems (Li, Na, K, Cs)Cl and (Li, K, Rb, Cs)Cl have been calculated by MD simulation, and the simulation results can provide guidance for the researches of LMBs in the future. [Figure not available: see fulltext.]. ? 2018, Springer Science+Business Media B.V., part of Springer Nature.

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