Dynamic density functional theory of polymers with salt in electric fields

Rajeev Kumar, Qinyu Zhu
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Abstract

We present a dynamic density functional theory for modeling the effects of applied electric fields on the local structure of polymers with added salt (polymer electrolytes). Time-dependent equations for the local electrostatic potential and volume fractions of polymer, cation, and anion of added salt are developed using the principles of linear irreversible thermodynamics. For such a development, a field theoretic description of the free energy of polymer melts doped with salts is used, which captures the effects of local variations in the dielectric function. Connections of the dynamic density functional theory with experiments are established by relating the three phenomenological Onsager’s transport coefficients of the theory to the mutual diffusion of electrolyte, ionic conductivity, and transference number of one of the ions. The theory is connected with a statistical mechanical model developed by Bearman and Kirkwood [J. Chem. Phys. 28, 136 (1958)] after relating the three transport coefficients to friction coefficients. The steady-state limit of the dynamic density functional theory is used to understand the effects of dielectric inhomogeneity on the phase separation in polymer electrolytes. The theory developed here provides not only a way to connect with experiments but also to develop multi-scale models for studying connections between local structure and ion transport in polymer electrolytes.
电场中含盐聚合物的动态密度泛函理论
我们提出了一种动态密度泛函理论,用于模拟外加电场对添加盐的聚合物(聚合物电解质)局部结构的影响。我们利用线性不可逆热力学原理,建立了聚合物、阳离子和阴离子添加盐的局部静电势和体积分数的时变方程。在此过程中,使用了掺盐聚合物熔体自由能的场论描述,它捕捉到了介电函数局部变化的影响。动态密度泛函理论与实验之间的联系是通过将理论中的三个昂萨格现象传输系数与电解质的相互扩散、离子电导率和其中一个离子的转移数联系起来而建立起来的。在将三个传输系数与摩擦系数联系起来后,该理论与 Bearman 和 Kirkwood [J. Chem. Phys. 28, 136 (1958)]建立的统计力学模型相联系。动态密度泛函理论的稳态极限用于理解介电不均匀性对聚合物电解质中相分离的影响。本文提出的理论不仅提供了一种与实验相联系的方法,还为研究聚合物电解质中局部结构与离子输运之间的联系提供了多尺度模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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