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Electrical Double Layers: Effects of Asymmetry in Electrolyte Valence on Steric Effects, Dielectric Decrement, and Ion-Ion Correlations

机译:电双层:不对称在电解质价对空间效果,介电减量和离子离子相关的影响

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摘要

We study the effects of asymmetry in electrolyte valence (i.e., non z:z electrolytes) on mean field theory of the electrical double layer. Specifically, we study the effect of valence asymmetry on finite ion-size effects, the dielectric decrement, and ion ion correlations. For a model configuration of an electrolyte near a charged surface in equilibrium, we present comprehensive analytical and numerical results for the potential distribution, electrode charge density, capacitance, and dimensionless salt uptake. We emphasize that the asymmetry in electrolyte valence significantly influences the diffuse-charge relations, and prior results reported in the literature are readily extended to non z:z electrolytes. We develop scaling relations and invoke physical arguments to examine the importance of asymmetry in electrolyte valence on the aforementioned effects. We conclude by providing implications of our findings on diffuse-charge dynamics and other electrokinetic phenomena.
机译:我们研究了电解质价(即非Z:Z电解质)在电双层的平均场理论中的影响。 具体地,我们研究了价不对称对有限离子尺寸效应,介电减量和离子离子相关的影响。 对于平衡的带电表面附近的电解质的模型配置,我们为电位分布,电极电荷密度,电容和无量纲盐吸收提供了综合的分析和数值结果。 我们强调电解质价值的不对称性显着影响漫射电荷关系,并且在文献中报道的先前结果易于延伸到非Z:Z电解质。 我们开发缩放关系,并调用物理争论,以检查在上述效果上的电解质价值的不对称性的重要性。 我们通过对我们对漫反射动力学和其他电动现象的影响来提供对结果的影响。

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