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Multiparameter Estimation in Voltammetry When an Electron Transfer Process Is Coupled to a Chemical Reaction

机译:电子转移过程与化学反应耦合时伏安法中的多参数估计

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Estimation of thermodynamic and kinetic parameters in electrochemical studies is usually undertaken via comparison of the experimental results with theory based on a model that mimics the experiment. The present study examines the credibility of transient d.c. and a.c. voltammetric theory experiment comparisons for recovery of the parameters needed to model the ubiquitous mechanism when an electron transfer (E) reaction is followed by a chemical (C) step in the EC process (A +/- e-reversible arrow(B0,k0,alpha) B reversible arrow (kf)(kb) C). The data analysis has been undertaken using optimization methods facilitated in some cases by grid computing. These techniques have been applied to the simulated (5% noise added) and experimental (reduction of trans-stilbene) voltammograms to assess the capabilities of parameter recovery of E-0 (reversible potential for the E step), k(0) (heterogeneous electron transfer rate constant at E-0), alpha (charge transfer coefficient for the E step), and k(f) and k(b) (forward and backward rate constants for the C step) under different kinetic regimes. The advantages provided by the use of a.c. instead of d.c. voltammetry and data optimization methods over heuristic approaches to "experiment"-theory comparisons are discussed, as are the limitations in the efficient recovery of a unique set of parameters for the EC mechanism. In the particular experimental case examined herein, results for the protonation of the electrochemically generated stilbene dianion demonstrate that, notwithstanding significant advances in experiment and theory of voltammetric analysis, reliable recovery of the parameters for the EC mechanism with a fast chemical process remains a stiff problem.
机译:电化学研究中的热力学和动力学参数的估算通常是通过将实验结果与基于模拟实验模型的理论进行比较来进行的。本研究考察了瞬态直流电的可信度。和交流伏安理论实验比较,用于恢复在EC过程中进行电子转移(E)反应后进行化学(C)步骤时建模普遍机理所需的参数(A +/-电子可逆箭头(B0,k0, alpha)B可逆箭头(kf)(kb)C)。数据分析是使用在某些情况下通过网格计算促进的优化方法进行的。这些技术已应用于模拟(添加5%噪声)和实验(减少反二苯乙烯的)伏安图,以评估E-0(E步骤的可逆电位),k(0)(异质性)的参数恢复能力。电子在E-0处的传输速率常数),α(E步的电荷传输系数)以及k(f)和k(b)(C步的前进和后退速率常数)在不同的动力学机制下。使用交流电提供的优势代替直流讨论了用于“实验”-理论比较的启发式方法的伏安法和数据优化方法,以及有效恢复EC机制的唯一参数集的局限性。在本文研究的特定实验情况下,电化学生成的二苯乙烯二价阴离子质子化的结果表明,尽管实验和伏安分析理论取得了重大进展,但通过快速化学过程可靠地恢复EC机制的参数仍然是一个难题。 。

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