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带电界面处的极性液体:偶极壳理论。

Polar liquids at charged interfaces: A dipolar shell theory.

机构信息

Department of Chemical Engineering, Massachusetts Institute of Technology, Cambridge, Massachusetts 02142, USA.

Department of Chemistry and Thomas Young Centre for Theory and Simulation of Materials, Imperial College London, Molecular Sciences Research Hub, White City Campus, London W12 0BZ, United Kingdom.

出版信息

J Chem Phys. 2022 Jun 28;156(24):244705. doi: 10.1063/5.0096439.

Abstract

The structure of polar liquids and electrolytic solutions, such as water and aqueous electrolytes, at interfaces underlies numerous phenomena in physics, chemistry, biology, and engineering. In this work, we develop a continuum theory that captures the essential features of dielectric screening by polar liquids at charged interfaces, including decaying spatial oscillations in charge and mass, starting from the molecular properties of the solvent. The theory predicts an anisotropic dielectric tensor of interfacial polar liquids previously studied in molecular dynamics simulations. We explore the effect of the interfacial polar liquid properties on the capacitance of the electrode/electrolyte interface and on hydration forces between two plane-parallel polarized surfaces. In the linear response approximation, we obtain simple formulas for the characteristic decay lengths of molecular and ionic profiles at the interface.

摘要

极性液体和电解质溶液(如水和水溶液)在界面处的结构是物理学、化学、生物学和工程学中许多现象的基础。在这项工作中,我们从溶剂的分子性质出发,开发了一种连续体理论,该理论捕捉了在带电界面处由极性液体进行的介电屏蔽的基本特征,包括电荷和质量的空间衰减振荡。该理论预测了先前在分子动力学模拟中研究过的界面极性液体的各向异性介电张量。我们研究了界面极性液体性质对电极/电解质界面电容以及两个平行极化表面之间水合力的影响。在线性响应近似下,我们得到了界面处分子和离子分布特征衰减长度的简单公式。

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