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Fractional differential equations in electrochemistry

机译:电化学分数阶微分方程

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摘要

Electrochemistry was one of the first sciences to benefit from the fractional calculus. Electrodes may be thought of as "transducers" of chemical fluxes into electricity. In a typical electrochemical cell, chemical species, such as ions or dissolved molecules, move towards the electrodes by diffusion. Likewise, other species are liberated into solution by the electrode reaction and diffuse away from the electrode into the bulk solution. It is demonstrated in this paper that the electric current is linearly related to the temporal semiderivative of the concentrations, at the electrode, of the species involved in the electrochemical reaction. More usefully, the semiintegral of the current provides immediate access information about concentrations.
机译:电化学是最早受益于分数演算的科学之一。可以将电极视为化学通量转化为电能的“转换器”。在典型的电化学电池中,诸如离子或溶解分子之类的化学物质通过扩散而向电极移动。同样,其他物质通过电极反应释放到溶液中,并从电极扩散到本体溶液中。本文证明,电流与电极上参与电化学反应的物质浓度的时间半导数线性相关。更有用的是,电流的半积分提供有关浓度的即时访问信息。

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