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电化学动力学中的动态溶剂效应:相关溶剂模式切换的指示。

Dynamic solvent effects in electrochemical kinetics: indications for a switch of the relevant solvent mode.

机构信息

Department of Electrochemistry, Moscow State University, Leninskie Gory 1-str.3, 119991 Moscow, Russian Federation.

出版信息

J Phys Chem B. 2010 Jan 14;114(1):311-20. doi: 10.1021/jp907479z.

Abstract

The influence of solvent dielectric relaxation on the rate of electron transfer (ET) at an electrochemical interface is addressed using both experiment and model calculations. Water-ethylene glycol (EG) mixtures were chosen as the solvent because their optical permittivity remains practically constant over the entire composition range. This allows observation of the dynamic solvent effect with a very minor interference from the static solvent properties (being typically of opposite sign). Three groups of experimental results are presented to characterize the mixed-solvent system (dielectric spectra in the frequency range 0.1-89 GHz), the mercury/solvent interface (electrocapillary data), and the ET kinetics (dc polarography of peroxodisulphate reduction). To extract the true solvent influence on the electron transfer elementary step, the results from dc polarography are corrected for interfacial effects with the help of the electrocapillary data. An anomalous dependence of the ET rate on EG content (i.e., nonmonotonic dependence of the ET rate on macroscopic viscosity) can be inferred after all corrections. The interplay of different solvent modes is suggested to be responsible for the observed features of ET kinetics. A possible interpretation of the corrected ET rate in the framework of the Agmon-Hopfield formalism is proposed, where the dielectric spectra of the mixed solvent are modeled by a superposition of three Debye equations. The results demonstrate that the observed anomalous "viscosity effect" may be explained qualitatively by an increased contribution of the fast relaxation mode at high EG contents.

摘要

使用实验和模型计算研究了溶剂介电弛豫对电化学界面上电子转移(ET)速率的影响。选择水-乙二醇(EG)混合物作为溶剂,因为它们的光介电常数在整个组成范围内基本保持恒定。这允许在非常小的静态溶剂性质干扰下(通常具有相反的符号)观察动态溶剂效应。提出了三组实验结果来表征混合溶剂体系(0.1-89GHz 频率范围内的介电谱)、汞/溶剂界面(电动毛细管数据)和 ET 动力学(过二硫酸盐还原的直流极谱)。为了提取电子转移基本步骤中溶剂的真实影响,使用电动毛细管数据对直流极谱的结果进行了界面效应的校正。在进行所有校正后,可以推断出 ET 速率对 EG 含量的异常依赖性(即 ET 速率对宏观粘度的非单调依赖性)。不同溶剂模式的相互作用被认为是导致观察到的 ET 动力学特征的原因。提出了在 Agmon-Hopfield 形式主义框架内解释校正后的 ET 速率的可能解释,其中混合溶剂的介电谱通过三个德拜方程的叠加来建模。结果表明,在高 EG 含量下,快速弛豫模式的贡献增加可以定性地解释观察到的异常“粘度效应”。

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