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理解聚合物电解质中离子传导的相关效应。

Understanding correlation effects for ion conduction in polymer electrolytes.

作者信息

Maitra Arijit, Heuer Andreas

机构信息

Westfälische Wilhelms-Universität Münster, Institut für Physikalische Chemie, Corrensstrasse 30, 48149 Münster, Germany.

出版信息

J Phys Chem B. 2008 Aug 14;112(32):9641-51. doi: 10.1021/jp711563a. Epub 2008 Jul 18.

Abstract

Polymer electrolytes typically exhibit diminished ionic conductivity due to the presence of correlation effects between the cations and anions. Microscopically, transient ionic aggregates, e.g., ion-pairs, ion-triplets, or higher order ionic clusters, engender ionic correlations. Employing all-atom simulation of a model polymer electrolyte comprising of poly(ethylene oxide) and lithium iodide, the ionic correlations are explored through construction of elementary functions between pairs of the ionic species that qualitatively explains the spatio-temporal nature of these correlations. Furthermore, commencing from the exact Einstein-like equation describing the collective diffusivity of the ions in terms of the average diffusivity of the ions (i.e., the self-terms) and the correlations from distinct pairs of ions, several phenomenological parameters are introduced to keep track of the simplification procedure that finally boils down to the recently proposed phenomenological model by Stolwijk and Obeidi (SO) [Stolwijk, N. A.; Obeidi, S. Phys. Rev. Lett. 2004, 93, 125901]. The approximation parameters, which can be retrieved from simulations, point to the necessity of additional information in order to fully describe the correlation effects apart from the mere fraction of ion-pairs that apparently accounts for the correlations originating from only the nearest neighbor structural correlations. These parameters are close to, but are not exactly unity, as assumed in the SO model. Finally, as an application of the extended SO model, one is able to estimate the dynamics of the free and non-free ions as well as their fractions from the knowledge of the single particle diffusivities and the collective diffusivity of the ions.

摘要

由于阳离子和阴离子之间存在关联效应,聚合物电解质通常表现出离子电导率降低的情况。从微观角度来看,瞬态离子聚集体,例如离子对、离子三联体或更高阶的离子簇,会产生离子关联。通过对由聚环氧乙烷和碘化锂组成的模型聚合物电解质进行全原子模拟,通过构建离子物种对之间的基本函数来探索离子关联,这些函数定性地解释了这些关联的时空性质。此外,从描述离子集体扩散率的精确类爱因斯坦方程出发,该方程依据离子的平均扩散率(即自项)以及不同离子对之间的关联,引入了几个唯象参数来跟踪简化过程,最终归结为斯托尔维克和奥贝迪(SO)最近提出的唯象模型[斯托尔维克,N. A.;奥贝迪,S.《物理评论快报》2004年,93卷,125901]。这些可从模拟中获取的近似参数表明,除了明显占仅源于最近邻结构关联所产生关联的离子对分数之外,还需要额外信息才能完全描述关联效应。这些参数接近但并不 exactly 等于SO模型中所假设的1。最后,作为扩展SO模型的一个应用,人们能够根据离子的单粒子扩散率和集体扩散率的知识来估计自由离子和非自由离子的动力学以及它们的分数。

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