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Simulations of cyclic voltammetric and chronoamperometric electrode responses at a disk electrode using combinations of spherical and cylindrical electrode geometries

机译:使用球形和圆柱形电极几何形状的组合在圆盘电极上模拟循环伏安法和计时电流法电极响应

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摘要

Using geometric models based on one-dimensional transport at spheres and cylinders, three methods for improving the simulation of voltammetric behavior of a disk electrode have been explored. One method is based on the common assumption of equivalency between the limiting currents for a disk and a hemisphere under steady-state diffusion conditions. The second method involves the use of a partial-sphere geometry which is a better approximation that is suitable at the extreme diffusional limits achievable at a disk electrode of fully planar and steady-state transport. The third method, which is generally applicable, is a further refinement that uses a combination of appropriate one-dimensional spherical and cylindrical geometries. The results demonstrate that reasonably accurate approximations of disk behavior for several reaction mechanisms can be achieved in a fraction of the time required to compute the more rigorous two-dimensional model. We propose that the approximation serve primarily as a fast way to explore system behavior and establish approximate values of the relevant parameters. More accurate computations can then be performed using the two-dimensional model.
机译:使用基于在球体和圆柱体上的一维传输的几何模型,探索了三种改进圆盘电极伏安行为模拟的方法。一种方法是基于稳态扩散条件下磁盘和半球的极限电流之间的等效当量的一般假设。第二种方法涉及使用局部球形几何形状,该局部球形几何形状是更好的近似值,适用于在完全平面和稳态传输的圆盘电极上可获得的极限扩散极限。通常适用的第三种方法是使用适当的一维球形和圆柱形几何形状的组合的进一步改进。结果表明,可以在计算更严格的二维模型所需的时间的一小部分内,获得几种反应机理的磁盘行为的合理准确的近似值。我们建议近似值主要用作探索系统行为并建立相关参数的近似值的快速方法。然后可以使用二维模型执行更准确的计算。

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