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The Long-Time Chronoamperometric Current at an Inlaid Microband (or Laminar) Electrode

机译:嵌入式微带(或层流)电极上的长时间计时电流

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摘要

In this article, we derive an approximate asymptotic analytical expression for the long-time chronoamperometric current response at an inlaid microband (or laminar) electrode. The expression is applicable when the length of the microband is much greater than the width, so that the diffusion of the electrochemical species can be regarded as two-dimensional. We extend the previously known result for the diffusion-limited current response (Aoki, K. et al. J. Electroanal. Chem. 1987, 225, 19–32 and Phillips, C.G. J. Electroanal. Chem. 1992, 333, 11–32) to accommodate quasi-reversible reactions and unequal diffusion coefficients of the oxidant and the reductant. Comparison with numerical calculations validates the analytical expression, and we demonstrate that unequal diffusion coefficients can substantially change the current response. Finally, we discuss the form of the long-time current response for a one-step, one-electron redox reaction if the rate constants are modelled in the Butler–Volmer framework, and indicate the importance of choosing the width of the microband appropriately to allow accurate experimental determination of the standard kinetic rate constant and the electron transfer coefficient.
机译:在本文中,我们得出了镶嵌微带(或层状)电极上长时间计时电流响应的近似渐近分析表达式。当微带的长度远大于宽度时,该表达式是适用的,因此电化学物质的扩散可以看作是二维的。我们扩展了扩散限制电流响应的先前已知结果(Aoki,K.等人,J。Electroanal。Chem。1987,225,19-32和Phillips,CGJ Electroanal。Chem。1992,333,11-32)以适应准可逆反应以及氧化剂和还原剂的不相等扩散系数。与数值计算的比较验证了解析表达式,并且我们证明了不相等的扩散系数会大大改变电流响应。最后,如果速率常数是在Butler-Volmer框架中建模的,则我们讨论了一步式单电子氧化还原反应的长期电流响应的形式,并指出了适当选择微带宽度的重要性可以精确实验确定标准动力学速率常数和电子传递系数。

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