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Galvanic Replacement of Electrochemically Restructured Copper Electrodes with Gold and Its Electrocatalytic Activity for Nitrate Ion Reduction

机译:金电化学置换电化学重组铜电极及其对硝酸根离子还原的电催化活性。

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摘要

The electrochemical formation of nanostructured materials is a cost effective route to creating substrates that can be employed in a variety of applications. In this work the surface of a copper electrode was electrochemically restructured in an alkaline solution containing ethanol as an additive to modify the surface morphology, and generate a Cu/Cu2O surface, which is known to be active for the electrocatalytic reduction of environmentally harmful nitrate ions. To increase the activity of the nanostructured surface it was decorated with gold prisms through a facile galvanic replacement approach to create an active Cu/Cu2O/Au layer. The surface was characterized by scanning electron microscopy, energy dispersive X-ray spectroscopy, X-ray photoelectron spectroscopy, as well as electrochemical techniques. It was found that the presence of recalcitrant oxides, and Au was beneficial for the increased activity compared to unmodified copper and undecorated restructured copper and was consistent with the incipient hydrous oxide adatom mediator model of electrocatalysis. This approach to generating nanostructured metal/metal oxide surfaces that can be galvanically replaced to create these types of composites may have other applications in the area of electrocatalysis.
机译:纳米结构材料的电化学形成是产生可用于多种应用的基底的成本有效途径。在这项工作中,铜电极的表面在含有乙醇作为添加剂的碱性溶液中进行了电化学重组,以改变其表面形态,并生成Cu / Cu2O表面,已知该表面具有电催化还原对环境有害的硝酸根离子的活性。 。为了增加纳米结构表面的活性,通过方便的电置换方法用金棱镜装饰它,以创建活性Cu / Cu2O / Au层。通过扫描电子显微镜,能量色散X射线光谱,X射线光电子光谱以及电化学技术对表面进行了表征。已发现,与未改性的铜和未修饰的重组铜相比,顽固性氧化物和Au的存在有利于提高活性,并且与电催化的初期含水氧化物吸附原子介体模型相符。这种产生纳米结构的金属/金属氧化物表面的方法可以被电取代以产生这些类型的复合材料,在电催化领域中可能还有其他应用。

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