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Enhanced oxygen evolution and reduction reactions of porous ternary NiCoFe foam electrodes prepared by dynamic hydrogen template deposition

机译:动态氢模板沉积制备的多孔三元NiCoFe泡沫电极增强的析氧和还原反应

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摘要

Electrodeposition at high current densities provides excellent means for the production of deposits with a high surface area. Porous deposits attract great interest due to their wide range of possible applications in electrocatalysis. In addition, an advanced porous electrode should have both, micro and nanoscaled features. We report the synthesis of a multiscale open porous foam of NiCoFe and its excellent electrocatalytic performance. At a current density of 1Acm-2 a 3D dendritic structure with open pores is obtained with pore walls having a morphology that consists of 'cauliflower-like' particles containing open multiscaled dendritic structures. Cyclic voltammograms of a smooth NiCoFe electrode are compared with those of the achieved nanodendritic NiCoFe foam electrode. The catalytic activity of the NiCoFe foam is strongly enhanced for both, the cathodic reduction of oxygen and the anodic evolution of oxygen and shows a good reversibility. Therefore the presented new material is promising as bifunctional catalyst in electrochemical energy conversion and storage devices.
机译:高电流密度下的电沉积为生产高表面积的沉积物提供了极好的方法。多孔沉积物由于其在电催化中的广泛应用而引起了极大的兴趣。此外,先进的多孔电极应同时具有微米和纳米级的特征。我们报告了NiCoFe的多尺度开放式多孔泡沫的合成及其出色的电催化性能。在1Acm-2的电流密度下,可获得具有开孔的3D树状结构,其孔壁的形态由包含开放的多尺度树状结构的“花椰菜状”颗粒组成。将光滑的NiCoFe电极的循环伏安图与获得的纳米树状NiCoFe泡沫电极的循环伏安图进行了比较。对于氧气的阴极还原和氧气的阳极析出,NiCoFe泡沫的催化活性都得到了显着提高,并且显示出良好的可逆性。因此,提出的新材料有望在电化学能量转换和存储装置中用作双功能催化剂。

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