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首页> 外文期刊>Electrochemistry communications >Surprising dependence of the current density of bromate electroreduction on the microelectrode radius as manifestation of the autocatalytic redox-cycle (EC″) reaction mechanism
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Surprising dependence of the current density of bromate electroreduction on the microelectrode radius as manifestation of the autocatalytic redox-cycle (EC″) reaction mechanism

机译:溴酸盐电极电流密度对微电极半径的令人惊讶的依赖性,作为自催化氧化还原循环(EC“)反应机理的表现

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摘要

AbstractBromate reduction from strongly acidic solutions under steady-state conditions in the presence of a very small amount of bromine has been studied voltammetrically at disk microelectrodes of various radii. In conformity with theoretical predictions the intensity of the average current density depends on the electrode size in a non-monotonous manner, passing through a maximum for a certain radius. This behavior is a direct consequence of the autocatalytic character of this process where the non-electroactive bromate anion is reduced owing to the catalytic cycle based on the bromine/bromide redox-mediator couple. The experimentally observed dependence of the maximal current density,jmax, on the inverse disc radius, 1/r0, for electrodes of larger sizes approaches a straight line corresponding to the “strong current limit”, which exceeds the diffusion-limited current density for bromate ion.Highlights?Non-electroactive BrO3?is efficiently reduced via autocatalytic redox-mediator cycle.?
机译:<![cdata [ 抽象 在存在非常少量的溴的存在下,从强酸性溶液下的强烈酸性溶液的溴化物减少在各种半径的磁盘微电极上伏耐泵研究。符合理论预测的平均电流密度的强度取决于以非单调的方式的电极尺寸,通过最大一定的半径。这种行为是该方法的自高催化特性的直接后果,其中由于基于溴/溴氧化还原蛋白酶耦合的催化循环而降低了非电活性溴酸盐阴离子。实验观察到最大电流密度的依赖性 j max ,在逆盘半径上,1 / R 0 ,较大尺寸的电极接近与“强电流限制”相对应的直线,超过扩散 - 限制溴酸盐离子的电流密度。 < CE:Section-Title ID =“ST0010”>突出显示 非电动活性兄弟 3 Δ通过自动催化氧化还原介质循环有效减少。

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