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Theoretical treatment of high-frequency, large-amplitude ac voltammetry applied to ideal surface-confined redox systems

机译:高频,大振幅交流伏安法在理论上受限制的氧化还原系统的理论处理

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摘要

Large-amplitude ac voltammetry, where the applied voltage is a large-amplitude sinusoidal waveform superimposed onto a dc ramp, is a powerful method for investigating the reaction kinetics of surface-confined redox species. Here we consider the large-amplitude ac voltammetric current response of a quasi-reversible, ideal, surface-confined redox system, for which the redox reaction is described by Butler-Volmer theory. We derive an approximate analytical solution, which is valid whenever the angular frequency of the sine-wave is much larger than the rate of the dc ramp and the standard kinetic rate constant of the redox reaction. We demonstrate how the third harmonic and the initial transient of the current response can be used to estimate parameters of the electrochemical system, namely the kinetic rate constant, the electron transfer coefficient, the adsorption formal potential, the initial proportion of oxidised molecules and the linear double-layer capacitance.
机译:大振幅交流伏安法(其中施加的电压是叠加在直流斜坡上的大振幅正弦波形)是研究表面受限氧化还原物质反应动力学的有效方法。在这里,我们考虑准可逆的,理想的,表面受限的氧化还原系统的大振幅交流伏安电流响应,针对该氧化还原系统的氧化还原反应由Butler-Volmer理论来描述。我们得出一个近似的解析解,当正弦波的角频率远大于直流斜坡的速率和氧化还原反应的标准动力学速率常数时,该解就有效。我们演示了如何使用三次谐波和电流响应的初始瞬态来估计电化学系统的参数,即动力学速率常数,电子传递系数,吸附形式势,氧化分子的初始比例和线性双层电容。

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