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首页> 外文期刊>Fluid Phase Equilibria >Phase behaviors of solid polymer electrolyte/salt systems in lithium secondary battery: the ionic interaction and nonrandomness effect
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Phase behaviors of solid polymer electrolyte/salt systems in lithium secondary battery: the ionic interaction and nonrandomness effect

机译:锂二次电池中固体聚合物电解质/盐系统的相行为:离子相互作用和非随机效应

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摘要

We establish a new melting point depression theory based on the modified double lattice (MDL) model. The proposed work takes into account the long-range interactions caused by the Coulombic interaction between ions and the local composition concept to describe phase behaviors of the solid polymer electrolyte/salt system. The ionic contribution is described by the Pitzer-Debye-Huckel (PDH) ion interaction model and the nonrandom factor proposed by Panayiotou et al. Systems studied in this work are binary mixtures of PEO and various salts. Results show that the ionic interaction and nonrandomness effect of the salt distribution play a major role in determining eutectic points of the given systems. When compared with experimental data, quantitative descriptions of the proposed model show better agreement for the given systems than those of the original MDL model. (c) 2004 Elsevier B.V. All rights reserved.
机译:我们基于改进的双晶格(MDL)模型建立了新的熔点降低理论。拟议的工作考虑了离子之间的库仑相互作用和局部组成概念所引起的远程相互作用,以描述固体聚合物电解质/盐体系的相行为。离子作用由Pitzer-Debye-Huckel(PDH)离子相互作用模型和Panayiotou等人提出的非随机因子描述。在这项工作中研究的系统是PEO和各种盐的二元混合物。结果表明,盐分布的离子相互作用和非随机作用在确定给定系统的共晶点方面起主要作用。当与实验数据进行比较时,与原始MDL模型相比,该模型的定量描述对于给定的系统显示出更好的一致性。 (c)2004 Elsevier B.V.保留所有权利。

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