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首页> 外文期刊>Journal of Electroanalytical Chemistry: An International Journal Devoted to All Aspects of Electrode Kinetics, Interfacial Structure, Properties of Electrolytes, Colloid and Biological Electrochemistry >Analytical solution of system of coupled non-linear reaction diffusion equations. Part I: Mediated electron transfer at conducting polymer ultramicroelectrodes
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Analytical solution of system of coupled non-linear reaction diffusion equations. Part I: Mediated electron transfer at conducting polymer ultramicroelectrodes

机译:耦合非线性反应扩散方程组的解析解。第一部分:在导电聚合物超微电极上的介导电子转移

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摘要

An analysis of reaction and diffusion within an electroactive polymer film deposited on aTinlaid microdisc electrode is presented. The theoretical analysis of the steady-state amperometric response for a conducting polymer-modified ultramicroelectrodes is re-studied. The coupled processes of chemical reaction, substrate and mediator diffusion are examined. Simple analytical expressions for substrate and mediator concentrations for all values of reaction/diffusion parameters are presented. The variation of current in terms of m (which defines the ratio of the radius of the inlaid microdisc to the thickness of the polymer layer) is also discussed. The model is based on non-stationary system of coupled reaction/ diffusion equations containing a non-linear term related to Michaelis-Menten kinetics of the enzymatic reactions. He's Homotopy perturbation method is used to give approximate analytical solutions of coupled non-linear reaction diffusion equations. A good agreement with available limiting case results is noticed.
机译:提出了对沉积在Tinlaid微盘电极上的电活性聚合物膜内反应和扩散的分析。重新研究了导电聚合物修饰的超微电极的稳态安培响应的理论分析。研究了化学反应,底物和介质扩散的耦合过程。给出了反应/扩散参数所有值的底物和介质浓度的简单分析表达式。还讨论了以m为单位的电流变化(m定义了镶嵌微盘的半径与聚合物层厚度的比值)。该模型基于耦合-反应/扩散方程的非平稳系统,该方程包含与酶反应的Michaelis-Menten动力学相关的非线性项。他的同伦摄动法用于给出耦合的非线性反应扩散方程的近似解析解。注意到与可用的有限案例结果达成了良好的协议。

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