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Fluctuations of concentration overpotential generated at gas-evolving electrodes

机译:气体逸出电极产生的浓度超电势的波动

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The electrode overpotential is usually expressed in terms of partial components related to ohmic, activation and concentration effects. For a gas-evolving electrode, the overpotential fluctuates because of bubble evolution but only the global overpotential fluctuations and, more recently, their ohmic part are easily accessible by routine experiments. In the present paper, high-amplitude fluctuations of concentration overpotential have been experimentally revealed by an anomalous behaviour of the current fluctuations induced by hydrogen evolution on platinum electrodes under potential control in alkaline media with or without the presence of a second mass-transport-controlled reaction. Inverted current jumps, reproducibly observed owing to an artificial bubble-nucleation site created on the edge of the rotating electrode, which provoked periodic bubble eruption, were ascribed to local concentration changes drastically affecting the current-lines distribution. These experimental results validate the theoretical models that predicted those anomalies but remained unverified up to now. A quantitative estimation of each overpotential component at bubble eruption is addressed by means of a simplified analytical approach supported by the simultaneous measurement of the electrochemical current noise and electrolyte resistance fluctuations.
机译:电极过电势通常用与欧姆,激活和浓度效应有关的部分成分表示。对于气体逸出电极,由于气泡的产生,过电势会发生波动,但只有整体的过电势起伏,最近,它们的欧姆部分可以通过常规实验轻松获得。在本文中,通过在碱性介质中在有或没有第二质量传递控制的情况下,在电位控制下,铂电极上氢放出所引起的电流波动的异常行为,已通过实验揭示了浓度超电势的高幅度波动。反应。由于在旋转电极的边缘上产生了人工气泡成核位点,可引起周期性的气泡喷出,可再现地观察到反向电流跳变,这归因于局部浓度变化极大地影响了电流线的分布。这些实验结果验证了预测这些异常的理论模型,但至今仍未得到验证。通过同时分析电化学电流噪声和电解质电阻波动的简化分析方法,可以解决气泡萌发时每个超电势成分的定量估计问题。

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