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具有表面反应的多组分电解质中的不对称整流电场和浓度场。

Asymmetric rectified electric and concentration fields in multicomponent electrolytes with surface reactions.

作者信息

Jarvey Nathan, Henrique Filipe, Gupta Ankur

机构信息

Department of Chemical and Biological Engineering, University of Colorado, Boulder, USA.

出版信息

Soft Matter. 2023 Aug 9;19(31):6032-6045. doi: 10.1039/d3sm00823a.

Abstract

Recent experimental studies have utilized AC electric fields and electrochemical reactions in multicomponent electrolyte solutions to control colloidal assembly. However, theoretical investigations have thus far been limited to binary electrolytes and have overlooked the impact of electrochemical reactions. In this study, we address these limitations by analyzing a system with multicomponent electrolytes, while also relaxing the assumption of ideally blocking electrodes to capture the effect of surface electrochemical reactions. Through a regular perturbation analysis in the low-applied-potential regime, we solve the Poisson-Nernst-Planck equations and obtain effective equations for electrical potential and ion concentrations. By employing a combination of numerical and analytical calculations, our analysis reveals a significant finding: electrochemical reactions alone can generate asymmetric rectified electric fields (AREFs), , time-averaged, long-range electric fields, even when the diffusivities of the ionic species are equal. This finding expands our understanding beyond the conventional notion that AREFs arise solely from diffusivity contrast. Furthermore, we demonstrate that AREFs induced by electrochemical reactions can be stronger than those resulting from asymmetric diffusivities. Additionally, we report the emergence of asymmetric rectified concentration fields (ARCFs), , time-averaged, long-range concentration fields, which supports the electrodiffusiophoresis mechanism of colloidal assembly observed in experiments. We also derive analytical expressions for AREFs and ARCFs, emphasizing the role of imbalances in ionic strength and charge density, respectively, as the driving forces behind their formation. The results presented in this article advance the field of colloidal assembly and also have implications for improved understanding of electrolyte transport in electrochemical devices.

摘要

最近的实验研究利用交变电场和多组分电解质溶液中的电化学反应来控制胶体组装。然而,迄今为止的理论研究仅限于二元电解质,并且忽略了电化学反应的影响。在本研究中,我们通过分析一个多组分电解质系统来解决这些局限性,同时放宽理想阻塞电极的假设以捕捉表面电化学反应的影响。通过在低施加电位 regime 下进行正则摄动分析,我们求解了泊松 - 能斯特 - 普朗克方程,并获得了电势和离子浓度的有效方程。通过结合数值计算和解析计算,我们的分析揭示了一个重要发现:即使离子物种的扩散率相等,仅电化学反应就能产生不对称整流电场(AREFs),即时间平均的长程电场。这一发现扩展了我们的理解,超越了传统观念,即 AREFs 仅由扩散率差异产生。此外,我们证明了由电化学反应诱导的 AREFs 可能比由不对称扩散率产生的更强。此外,我们报告了不对称整流浓度场(ARCFs)的出现,即时间平均的长程浓度场,这支持了实验中观察到的胶体组装的电扩散电泳机制。我们还推导了 AREFs 和 ARCFs 的解析表达式,分别强调了离子强度和电荷密度不平衡作为其形成背后驱动力的作用。本文提出的结果推动了胶体组装领域的发展,并且对更好地理解电化学装置中的电解质传输也有影响。

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