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Limiting Currents for Steady-State Electrolysis of an Equilibrium Mixture, with and without Supporting Inert Electrolyte

机译:有和没有支持惰性电解质的平衡混合物稳态电解的极限电流

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摘要

An exact treatment derives the steady-state limiting current of a one-electron reduction for the N # O↑(+)+ A↑(-) mixture at a hemispherical microelectrode. Either or both of the neutral N and cationic O↑(+) species may be electroactive. A supporting salt is present at any concentration, including zero or excess; its ions are electropassive and do not interact with the other solutes or each other. The various species are treated as having distinct diffusivities, linked to their mobilities through the Nernst-Einstein relationship. Universal electroneutrality is assumed. The predictions of the model are compared with published experimental data on the reduction of aqueous weak acids; agreement is excellent at intermediate, but poor at low, support ratios. Analysis of the unsupported case shows that the neutral N species dissociates in a narrow zone close to the electrode, and the inejection of ions there serves to increase the electric field in the outer region of the transport zone. This enhances cationic migration enormously, leading to an unsupported limiting current that is much more than double the supported value. However, the limiting current is drastically diminished by traces of foreign electrolyte. Curiously, the limiting current with full support adopts the same value when equilibration is fast as when it is very slow, although the mechanisms are totally different.
机译:精确的处理可以得出半球形微电极上N#O↑(+)+ A↑(-)混合物的单电子还原的稳态极限电流。中性N和阳离子O↑(+)物种中的任何一个或两个都可能具有电活性。支持盐的浓度可以是任何浓度,包括零或过量;它的离子是电钝性的,不会与其他溶质或彼此发生相互作用。通过Nernst-Einstein关系将各种物种与它们的运动性联系起来,具有不同的扩散性。假定具有通用的电子中性。该模型的预测与已发表的有关减少弱酸水溶液的实验数据进行了比较;协议在中级时出色,但在低支持率时则差。对无支撑情况的分析表明,中性N物质在靠近电极的狭窄区域解离,离子的注入有助于增加传输区域外部的电场。这极大地增强了阳离子迁移,导致不受支持的极限电流大大超过支持值的两倍。但是,极限电流会由于痕量的异物电解质而大大降低。奇怪的是,尽管机理完全不同,但在平衡快时和极慢时,具有完全支持的极限电流采用相同的值。

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