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首页> 外文期刊>Advances in materials science and engineering >Multiionic and Permittivity-Related Effects on the Diffuse Electric Double Layer Structure at Solid-Electrolyte Solution Interfaces
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Multiionic and Permittivity-Related Effects on the Diffuse Electric Double Layer Structure at Solid-Electrolyte Solution Interfaces

机译:固体电解质溶液界面上扩散双电层结构的多离子和介电常数相关效应

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摘要

The structure and differential capacitance of the diffuse part of the electric double layer at solid-electrolyte solution interfaces are examined using a theoretical model that takes into account the finite ion size by modeling the solution as a suspension of polarizable insulating spheres in water. This formalism is applied to binary and mixed electrolyte solutions using the “Boublik–Mansoori–Carnahan–Starling–Leland” (BMCSL) theory for the steric interactions among ions. It is shown that the ionic size differences have a strong bearing on the diffuse part of the electric double layer structure, as well as on the differential capacitance dependence on the surface potential for mixed electrolytes.
机译:使用理论模型检查双电层在固体电解质溶液界面处的扩散部分的结构和微分电容,该理论模型通过将溶液建模为可极化的绝缘球体在水中的悬浮液来考虑有限的离子尺寸。使用“ Boublik–Mansoori–Carnahan–Starling–Leland”(BMCSL)理论将这种形式主义应用于二元和混合电解质溶液,以实现离子之间的空间相互作用。已表明,离子尺寸差异对双电层结构的扩散部分以及与混合电解质的表面电势有关的差分电容依赖性具有很大的影响。

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