板层(表面解剖学)
离子
电导率
材料科学
电解质
化学物理
离子电导率
离子键合
能斯特方程
层状结构
化学
物理化学
电极
复合材料
有机化学
作者
Zidan Zhang,Jacob Sass,Jakub Krajniak,Venkat Ganesan
出处
期刊:ACS Macro Letters
[American Chemical Society]
日期:2022-10-25
卷期号:11 (11): 1265-1271
被引量:5
标识
DOI:10.1021/acsmacrolett.2c00401
摘要
Recently, significant interest has arisen on the impact of dynamical ion correlations on the conductivity and transport properties of polymeric electrolyte materials. It has been hypothesized that confining ion motion to narrow channels may reduce such ion correlations and enhance the resulting ionic conductivity. Motivated by such considerations, in this study we used a multiscale simulation framework to study the dynamical ion correlations in the microphase-separated lamella phase of block copolymeric ionic liquids and compare with the corresponding results for homopolymeric systems. We probed the influence of ion correlations through the partial ionicity, Δ, which quantifies the ratio of true conductivity to the ideal, Nernst–Einstein conductivity for the anion-related contributions. Consistent with our original hypothesis, our results demonstrate that the partial ionicity relating to the mobile anions is much larger in the lamella phases of block copolymers compared to that in homopolymers. Analysis of the distinct conductivity contributions demonstrates that such results arise as a result of an intricate compensation among the nonideal dynamical correlations relating to anions in lamella phases. Together, our results suggest that self-assembled phases of block copolymers may provide an avenue to tune the dynamical ion correlations in polymer electrolyte systems.
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