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离子液体中屏蔽静电表面力的衰减行为:非局部静电的重要作用。

Decay behavior of screened electrostatic surface forces in ionic liquids: the vital role of non-local electrostatics.

作者信息

Kjellander Roland

机构信息

Department of Chemistry and Molecular Biology, University of Gothenburg, SE-412 96 Gothenburg, Sweden.

出版信息

Phys Chem Chem Phys. 2016 Jul 28;18(28):18985-9000. doi: 10.1039/c6cp02418a. Epub 2016 Jun 29.

Abstract

Screened electrostatic surface forces, also called double layer forces, between surfaces in ionic liquids can, depending on the circumstances, decay in an exponentially damped, oscillatory manner or in a plain exponential way (the latter as in dilute electrolyte solutions where ion-ion correlations are very weak). The occurrence of both of these behaviors in dense ionic liquids, where ion-ion correlations are very strong, is analyzed in the current work using exact statistical mechanics formulated in a manner that is physically transparent. A vital ingredient in understanding the decay behaviors is the fact that electrostatics in dense electrolytes have a non-local nature caused by the strong correlations. It is shown that the effects of non-locality can be elucidated by a remarkably simple, general expression for the decay parameter κ that replaces the classical expression for the inverse Debye length κDH of the Debye-Hückel (DH) and non-linear Poisson-Boltzmann approximations. This exact expression is valid for both the plain exponential and the oscillatory cases. It shows how strong correlations can give rise to plain exponential decay with a long decay length. Such a decay can arise from anion-cation associations of various kinds, for instance transient ion pairing or association caused by many-body correlations; ion pairing is a possibility but not a necessity for this to occur. Theoretical analysis is done for systems consisting of ions with an arbitrary shape and internal charge density and immersed planar walls with arbitrary internal charge distribution and any short-range ion-surface interaction. The screened electrostatic surface force between two walls is at large separations proportional to the product of effective surface charge densities of each wall. For the oscillatory case, each wall contributes with a phase shift to the oscillations of the interaction.

摘要

在离子液体中,表面之间的屏蔽静电表面力,也称为双层力,根据具体情况,可能以指数衰减振荡的方式或简单指数方式衰减(后者如在离子 - 离子相关性非常弱的稀电解质溶液中)。在当前工作中,使用以物理透明方式制定的精确统计力学,分析了在离子 - 离子相关性非常强的致密离子液体中这两种行为的出现情况。理解衰减行为的一个关键因素是,致密电解质中的静电具有由强相关性引起的非局部性质。结果表明,非局部性的影响可以通过一个非常简单的、通用的衰减参数κ表达式来阐明,该表达式取代了德拜 - 休克尔(DH)和非线性泊松 - 玻尔兹曼近似中逆德拜长度κDH的经典表达式。这个精确表达式对简单指数情况和振荡情况都有效。它展示了强相关性如何导致具有长衰减长度的简单指数衰减。这种衰减可能源于各种阴离子 - 阳离子缔合,例如瞬态离子对或由多体相关性引起的缔合;离子对是一种可能性,但不是发生这种情况的必要条件。对由具有任意形状和内部电荷密度的离子以及具有任意内部电荷分布和任何短程离子 - 表面相互作用的浸入平面壁组成的系统进行了理论分析。在大间距时,两壁之间的屏蔽静电表面力与每个壁的有效表面电荷密度的乘积成正比。对于振荡情况,每个壁对相互作用的振荡都有一个相移贡献。

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