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首页> 外文期刊>International journal of hydrogen energy >Ni/Fe electrodes prepared by electrodeposition method over different substrates for oxygen evolution reaction in alkaline medium
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Ni/Fe electrodes prepared by electrodeposition method over different substrates for oxygen evolution reaction in alkaline medium

机译:在碱性介质上通过电沉积方法在不同基板上制备Ni / Fe电极进行氧气析出反应

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A series of Ni/Fe electrodes have been prepared by electxodeposition of metal salt precursors on different substrates. The surface morphology, chemical composition and electrochemical characteristics of these electrodes were studied by various physico-chemical techniques such as X-ray Photoelectron Spectroscopy (XPS) and Scanning Electron Microscopy (SEM). The electrochemical properties of the electrodes were examined by steady-state polarization curves. First, the influence of features such as Ni/Fe composition and type of substrate for the oxygen evolution reaction (OER) were determined by electrochemical techniques in a conventional 3-electrodes cell. The overpotential for the OER is lower for the electrodes with the higher concentrations of Ni. The electrodes with a Ni/Fe composition of 75/25 wt.% electrodeposited on steel mesh and/or 75/25 and 50/50 wt.% on nickel foam result in the most active configurations for the OER. These electrodes were further tested as anodes for alkaline water electrolysis during at least 70 h. In order to understand their activity and stability, the used electrodes were also characterized by SEM and compared to the fresh electrodes. Among the compositions and substrates examined, the Ni50Fe50-Nf electrode exhibited the lowest overpotential (2.1 V) for the OER and the higher stability as anode in an alkaline water electrolysis cell.
机译:通过在不同基板上进行电沉积金属盐前驱体,制备了一系列Ni / Fe电极。通过各种物理化学技术,例如X射线光电子能谱(XPS)和扫描电子显微镜(SEM),研究了这些电极的表面形态,化学成分和电化学特性。通过稳态极化曲线检查电极的电化学性质。首先,在常规的三电极电池中,通过电化学技术确定了诸如Ni / Fe成分和基材类型等特征对氧析出反应(OER)的影响。 Ni浓度较高的电极的OER的过电势较低。 Ni / Fe组成为75/25 wt。%的电极电沉积在钢网上和/或75/25和50/50 wt。%的镍泡沫上电沉积的电极导致OER的活性最高。这些电极在至少70 h内作为碱性水电解的阳极进行了进一步测试。为了了解它们的活性和稳定性,还对用过的电极进行了SEM表征,并与新鲜电极进行了比较。在所检查的成分和基材中,Ni50Fe50-Nf电极对OER表现出最低的过电势(2.1 V),并且在碱性水电解槽中显示出更高的阳极稳定性。

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