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Molecular dynamics study of the transport properties and local structures of molten binary systems (Li, Na)Cl, (Li, K)Cl and (Na, K)Cl

机译:熔融二元体系(Li,Na)Cl,(Li,K)Cl和(Na,K)Cl的输运性质和局部结构的分子动力学研究

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The structures and dynamic properties of molten alkali binary chlorides LiCI-NaCl, LiCl-KCl and KCI-NaCl at 1100 K have been calculated across the full composition range in this paper in detail by molecular dynamics simulations. The effects of Lid I on the local structures and transport properties as the self-diffusion coefficients, viscosities and ionic conductivities of molten NaCl and KCl as well as the mixing effects between NaCl and KCl have been calculated and analyzed. The results reveal that the Tosi-Fumi potential predicts negative composition dependence for density and positive composition dependences for ionic diffusivity and ionic conductivity as the contents of Lid 1 are increased for molten LiCl-NaCl and LiCl-KCl. As the KCl contents are increased, the ionic diffusivity of molten KCI-NaCl shows weak composition dependence. However, the density and ionic conductivity exhibit negative composition dependences. The transport performances of these mixed melts are dominated by the local structures and interatomic forces. The shear viscosities of the mixtures decrease firstly and then increase under the influences of these two factors. For molten KU or NaCl with the addition of a smaller cation (Lit), the interactions between counter ions and closed packs between anions are weakened, while closed packs between cations are promoted. What's more, the smaller the added ion is, the more pronounced the effects are. However, the addition of a larger cation presents the opposite effects. 2015 Elsevier B.V. All rights reserved.
机译:本文通过分子动力学模拟详细地计算了整个成分范围内在1100 K下熔融碱金属二元氯化物LiCl-NaCl,LiCl-KCl和KCI-NaCl的结构和动力学性质。计算并分析了Lid I对NaCl和KCl的自扩散系数,黏度和离子电导率以及NaCl和KCl之间的混合效应对局部结构和输运性能的影响。结果表明,随着熔融LiCl-NaCl和LiCl-KCl中Lid 1含量的增加,Tosi-Fumi电势预测密度的负组成依赖性以及离子扩散率和离子电导率的正组成依赖性。随着KCl含量的增加,熔融KCl-NaCl的离子扩散系数显示出较弱的成分依赖性。然而,密度和离子电导率表现出负的组成依赖性。这些混合熔体的传输性能受局部结构和原子间力支配。在这两个因素的影响下,混合物的剪切粘度先减小然后增大。对于熔融的KU或NaCl,添加了较小的阳离子(Lit),平衡离子与阴离子之间的紧密堆积之间的相互作用会减弱,而阳离子之间的紧密堆积会得到促进。而且,添加的离子越少,效果越明显。但是,加入较大的阳离子会产生相反的效果。 2015 Elsevier B.V.保留所有权利。

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