论文标题

离子结构和高度浓缩的受限电解质的衰减长度

Ionic Structure and Decay Length in Highly-Concentrated Confined Electrolytes

论文作者

Anousheh, Nasim, Solis, Francisco J., Jadhao, Vikram

论文摘要

我们使用电解质原始模型的分子动力学模拟来研究在众多的电解质浓度,界面分离,表面电荷密度和离子尺寸的范围内,由带电的平面接口限制的水性电解质溶液中的离子结构。研究的灵感来自最近的实验,这些实验直接测量了随着浓度增加而高度浓缩的电解质的衰减长度的增加。通过评估与带电界面筛选相关的离子密度曲线,净电荷密度,筛选因子以及衰减长度,可以探测由接口创建的纳米浓缩中离子的行为。结果表明,由于通过调整界面分离,表面电荷密度和离子大小而产生的广泛的电解质系统,浓度从0.1 m更改为2.5 m,因此存在两个不同的筛查行为方案。对于低浓度,筛选因子表现出单调衰减至0,衰减长度随着浓度的增加而急剧降低。对于高浓度($ \ gtrsim 1 $ m),筛选因子具有非单调行为信号传导电荷反演和离子附近离子结构层的形成。在这些条件下的衰减长度随着浓度的增加而上升,表现出幂律行为。为了补充仿真结果,开发了一种变异方法,该方法产生具有与模拟中观察到的特征相一致的特征的电荷密度。结果证明了空间相关强度的上升与筛选行为的变化之间的关系。

We use molecular dynamics simulations of the primitive model of electrolytes to study the ionic structure in aqueous monovalent electrolyte solutions confined by charged planar interfaces over a wide range of electrolyte concentration, interfacial separation, surface charge density, and ion size. The investigations are inspired by recent experiments that have directly measured the increase in the decay length for highly-concentrated electrolytes with increase in concentration. The behavior of ions in the nanoconfinement created by the interfaces is probed by evaluating the ionic density profiles, net charge densities, screening factors, and decay length associated with the screening of the charged interface. Results show the presence of two distinct regimes of screening behavior as the concentration is changed from 0.1 M to 2.5 M for a wide range of electrolyte systems generated by tuning the interfacial separation, surface charge density, and ionic size. For low concentrations, the screening factor exhibits a monotonic decay to 0 with a decay length that decreases sharply with increasing concentration. For high concentrations ($\gtrsim 1$ M), the screening factor has a non-monotonic behavior signaling charge inversion and formation of structured layers of ions near the interfaces. The decay length under these conditions rises with increasing concentration, exhibiting a power-law behavior. To complement the simulation results, a variational approach is developed that produces charge densities with characteristics consistent with those observed in simulations. The results demonstrate the relation between the rise in the strength of steric correlations and the changes in the screening behavior.

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