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浓电解质中筛选长度的标度分析

Scaling Analysis of the Screening Length in Concentrated Electrolytes.

作者信息

Lee Alpha A, Perez-Martinez Carla S, Smith Alexander M, Perkin Susan

机构信息

John A. Paulson School of Engineering and Applied Sciences, Harvard University, Cambridge, Massachusetts 02138, USA.

Department of Chemistry, Physical and Theoretical Chemistry Laboratory, University of Oxford, Oxford OX1 3QZ, United Kingdom.

出版信息

Phys Rev Lett. 2017 Jul 14;119(2):026002. doi: 10.1103/PhysRevLett.119.026002.

Abstract

The interaction between charged objects in an electrolyte solution is a fundamental question in soft matter physics. It is well known that the electrostatic contribution to the interaction energy decays exponentially with object separation. Recent measurements reveal that, contrary to the conventional wisdom given by the classic Poisson-Boltzmann theory, the decay length increases with the ion concentration for concentrated electrolytes and can be an order of magnitude larger than the ion diameter in ionic liquids. We derive a simple scaling theory that explains this anomalous dependence of the decay length on the ion concentration. Our theory successfully collapses the decay lengths of a wide class of salts onto a single curve. A novel prediction of our theory is that the decay length increases linearly with the Bjerrum length, which we experimentally verify by surface force measurements. Moreover, we quantitatively relate the measured decay length to classic measurements of the activity coefficient in concentrated electrolytes, thus showing that the measured decay length is indeed a bulk property of the concentrated electrolyte as well as contributing a mechanistic insight into empirical activity coefficients.

摘要

电解质溶液中带电物体之间的相互作用是软物质物理学中的一个基本问题。众所周知,相互作用能的静电贡献随物体间距呈指数衰减。最近的测量结果表明,与经典泊松 - 玻尔兹曼理论给出的传统观点相反,对于浓电解质,衰减长度随离子浓度增加,并且在离子液体中可能比离子直径大一个数量级。我们推导了一个简单的标度理论,该理论解释了衰减长度对离子浓度的这种反常依赖性。我们的理论成功地将一大类盐的衰减长度归并到一条单一曲线上。我们理论的一个新颖预测是,衰减长度随比耶鲁姆长度线性增加,我们通过表面力测量对此进行了实验验证。此外,我们将测得的衰减长度与浓电解质中活度系数的经典测量值定量关联起来,从而表明测得的衰减长度确实是浓电解质的一种体相性质,同时也为经验活度系数提供了机理上的见解。

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