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Electrochemical restructuring of copper surfaces using organic additives and its effect on the electrocatalytic reduction of nitrate ions

机译:有机添加剂对铜表面的电化学重整及其对硝酸根离子电催化还原的影响

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摘要

This work describes the fabrication of nanostructured copper electrodes using a simple potential cycling protocol that involves oxidation and reduction of the surface in an alkaline solution. It was found that the inclusion of additives, such as benzyl alcohol and phenylacetic acid, has a profound effect on the surface oxidation process and the subsequent reduction of these oxides. This results in not only a morphology change, but also affects the electrocatalytic performance of the electrode for the reduction of nitrate ions. In all cases, the electrocatalytic performance of the restructured electrodes was significantly enhanced compared with the unmodified electrode. The most promising material was formed when phenylacetic acid was used as the additive. In addition, the reduction of residual oxides on the surface after the modification procedure to expose freshly active reaction sites on the surface before nitrate reduction was found to be a significant factor in dictating the overall electrocatalytic activity. It is envisaged that this approach offers an interesting way to fabricate other nanostructured electrode surfaces.
机译:这项工作描述了使用简单的电位循环方案(包括在碱性溶液中氧化和还原表面)来制造纳米结构铜电极。已经发现,包括添加剂,例如苯甲醇和苯乙酸,对表面氧化过程和随后的这些氧化物的还原具有深远的影响。这不仅导致形态变化,而且还影响电极对硝酸根离子还原的电催化性能。在所有情况下,与未修饰的电极相比,重组电极的电催化性能均得到显着提高。当使用苯乙酸作为添加剂时,形成了最有希望的材料。另外,发现在改性程序之后表面上残留的氧化物的还原以在硝酸盐还原之前暴露表面上的新鲜活性反应位点是决定总体电催化活性的重要因素。可以设想,该方法提供了一种有趣的方式来制造其他纳米结构的电极表面。

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