论文标题

超浓度电解质中离子聚集和凝胶化理论

Theory of Ion Aggregation and Gelation in Super-Concentrated Electrolytes

论文作者

McEldrew, Michael, Goodwin, Zachary A. H., Bi, Sheng, Bazant, Martin Z., Kornyshev, Alexei A.

论文摘要

在具有不对称或不规则离子(例如离子液体和溶剂中盐电解质)的浓缩电解质中,离子缔合比简单的离子配对更为复杂。大型分支聚集体可以在均匀的盐浓度下以显着浓度形成。当离子关联达到一定阈值时,渗透离子凝胶网络会自发形成。凝胶化是一种在聚合物物理学中众所周知的现象,但在浓缩电解质中实际上并未研究。然而,尽管这一事实,出于简单起见,通常将离子配对描述应用于这些系统。在这项工作中,我们从聚合物物理学的既定理论中汲取了强烈的理论,我们开发了一种简单的热力学模型,以可逆的离子聚集和凝胶电解质中的凝胶化,这是涉及离子溶剂化和离子关联之间竞争的浓缩电解质。我们的模型预测了不同大小的离子簇的种群,它是盐浓度的函数,它捕获了离子凝胶的发作,也捕获了离子后离子在凝胶中的凝胶后分配。我们讨论了我们的模型的适用性,以及其预测对热力学,运输和流变学特性的影响。

In concentrated electrolytes with asymmetric or irregular ions, such as ionic liquids and solvent-in-salt electrolytes, ion association is more complicated than simple ion-pairing. Large branched aggregates can form at significant concentrations at even moderate salt concentrations. When the extent of ion association reaches a certain threshold, a percolating ionic gel networks can form spontaneously. Gelation is a phenomenon that is well known in polymer physics, but it is practically unstudied in concentrated electrolytes. However, despite this fact, the ion-pairing description is often applied to these systems for the sake of simplicity. In this work, drawing strongly from established theories in polymer physics, we develop a simple thermodynamic model of reversible ionic aggregation and gelation in concentrated electrolytes accounting for the competition between ion solvation and ion association. Our model predicts the populations of ionic clusters of different sizes as a function of salt concentration, it captures the onset of ionic gelation and also the post-gel partitioning of ions into the gel. We discuss the applicability of our model, as well as the implications of its predictions on thermodynamic, transport, and rheological properties.

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