Charge-Transfer Coefficient in the Kinetics of Single- and Multi-electron Transfer Redox Reactions

IF 3.2 3区 化学 Q2 CHEMISTRY, PHYSICAL The Journal of Physical Chemistry C Pub Date : 2025-02-28 DOI:10.1021/acs.jpcc.4c08537
Rubul Das, Geetanksha Gupta, Himanshu Kumawat, Amruta Iyer, Manoj Neergat
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Abstract

Single-step single-electron and multi-step multi-electron transfer reactions in neutral and acidic media, respectively, are investigated using a rotating-disk electrode (RDE) assembly as a function of temperature. The estimated kinetic current (ik) is analyzed using the classical Butler–Volmer (B–V) equation for single-step single-electron transfer reactions and the generalized B–V equation for multi-step multi-electron transfer reactions. The ik estimated as a function of temperature at very small intervals of overpotential (η) is used to determine the apparent activation enthalpy (ΔH#) and the pre-exponential factor (Af) (containing the apparent activation entropy (ΔS#)) from the Eyring analysis. The trends in the ΔH# and Af with η are analyzed. The plots of ΔH# and Af as a function of η exhibit the same number of slopes as that of the Tafel plots, corresponding to either a change in the rate-determining step (rds) or a change in the fractional coverage by the adsorbed intermediates in the kinetically operable overpotential range. Consequently, the estimated symmetry factor (β) or charge-transfer coefficient (α) values from both the Tafel and Eyring analyses reach a general consensus and explain the α values greater than 1 for multi-step multi-electron transfer processes. From the η dependence of ΔH# and ΔS#, the enthalpic and entropic components of β and α are estimated. Such analysis enhances the understanding of the significance of β and α, aiding the evaluation of the kinetic parameters, the interpretation of the proposed reaction mechanism, and the identification of rds.

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单电子和多电子转移氧化还原反应动力学中的电荷转移系数
利用旋转圆盘电极(RDE)装置研究了中性介质中单步单电子转移反应和酸性介质中多步多电子转移反应的温度函数。用单步单电子转移反应的经典Butler-Volmer (B-V)方程和多步多电子转移反应的广义B-V方程分析了估计的动力学电流ik。在非常小的过电位(η)区间内,作为温度函数估计的ik用于确定Eyring分析中的表观活化焓(ΔH#)和指前因子(Af)(包含表观活化熵(ΔS#))。分析了ΔH#和Af随η的变化趋势。ΔH#和Af随η的变化曲线与Tafel曲线的斜率相同,对应于速率决定步长(rds)的变化或在动力学可操作的过电位范围内吸附中间体的分数覆盖范围的变化。因此,从Tafel和Eyring分析中估计的对称因子(β)或电荷转移系数(α)值达到了普遍的共识,并解释了多步多电子转移过程的α值大于1。根据ΔH#和ΔS#的η依赖关系,估计了β和α的焓和熵分量。这种分析增强了对β和α的意义的理解,有助于动力学参数的评估,反应机理的解释,以及rds的识别。
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来源期刊
The Journal of Physical Chemistry C
The Journal of Physical Chemistry C 化学-材料科学:综合
CiteScore
6.50
自引率
8.10%
发文量
2047
审稿时长
1.8 months
期刊介绍: The Journal of Physical Chemistry A/B/C is devoted to reporting new and original experimental and theoretical basic research of interest to physical chemists, biophysical chemists, and chemical physicists.
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