首页> 外文期刊>Journal of chemical theory and computation: JCTC >Electrochemical Electron Transfer and Proton-Coupled Electron Transfer: Effects of Double Layer and Ionic Environment on Solvent Reorganization Energies
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Electrochemical Electron Transfer and Proton-Coupled Electron Transfer: Effects of Double Layer and Ionic Environment on Solvent Reorganization Energies

机译:电化学电子转移和质子耦合电子转移:双层和离子环境对溶剂重组能的影响

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摘要

Electron transfer and proton coupled electron transfer (PCET) reactions at electrochemical interfaces play an essential role in a broad range of energy conversion processes. The reorganization energy, which is a measure of the free-energy change associated with solute and solvent rearrangements, is a key quantity for calculating, rate constants for these reactions. We present a computational method for including the effects of the double layer and ionic environment of the diffuse layer in calculations of electrochemical solvent reorganization energies. This approach incorporates an accurate electronic charge distribution of the solute within a molecular-shaped cavity in conjunction with a dielectric continuum treatment of the solvent, ions,,and electrode using the integral equations formalism polarizable continuum model. The molecule-solvent boundary is treated explicitly, but the effects of the electrode-double layer and double layer-diffuse layer boundaries, as well as the effects of the ionic strength of the solvent, are included through an external Green's function. The calculated total reorganization energies agree well with experimentally measured values for a series of electrochemical systems, and the effects of including both the double layer and ionic environment are found to be very small. This general approach was also extended to electrochemical PCET and produced total reorganization energies in dose agreement with experimental values for two experimentally studied PCET systems.
机译:电化学界面上的电子转移和质子耦合电子转移(PCET)反应在广泛的能量转换过程中起着至关重要的作用。重组能是与溶质和溶剂重排有关的自由能变化的量度,是计算这些反应速率常数的关键量。我们提出了一种计算方法,用于在电化学溶剂重组能的计算中包括双层和扩散层的离子环境的影响。该方法结合了分子形腔内溶质的精确电子电荷分布,并使用积分方程形式可极化连续体模型对溶剂,离子和电极进行介电连续体处理。分子-溶剂边界已得到明确处理,但是电极-双层和双层-扩散层边界的影响以及溶剂离子强度的影响通过外部格林函数包括在内。计算出的总重组能与一系列电化学系统的实验测量值非常吻合,发现同时包含双层和离子环境的影响很小。该通用方法还扩展到电化学PCET,并产生了两个实验研究的PCET系统的总重组能,其剂量与实验值一致。

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