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Electrochemical deposition and characterization of NiFe coatings as electrocatalytic materials for alkaline water electrolysis

机译:NiFe涂层的电化学沉积和表征,作为碱性水电解的电催化材料

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In this study, nickel (Cu/Ni), iron (Cu/Fe) and nickel-iron (Cu/NiFe) composite coatings with various chemical compositions were electrochemically deposited on a copper electrode and characterized using cyclic voltammetry (CV), atomic absorption spectroscopy (AAS), scanning electron microscopy (SEM) and atomic force microscopy (AFM) techniques in view of their possible applications as electrocatalytic materials for the hydrogen evolution reaction (HER) in an alkaline medium. The electrocatalytic activity of the coatings for the HER was studied in 1 M KOH solution using cathodic current-potential curves and electrochemical impedance spectroscopy (EIS) techniques. The presence of nickel along with iron increases the electrocatalytic activity of the electrode for the HER when compared to nickel and iron coatings individually. The HER activity of the composite coatings depends on the chemical composition of the alloys. The Cu/NiFe-3 electrode (with a molar concentration ratio of Ni{sup}(2+):Fe{sup}(2+) of 4:6 in the plating bath) was found to be the best suitable cathode material for the HER in an alkaline medium under the experimental conditions studied. Furthermore, the electrocatalytic activity of the Cu/NiFe-3 electrode for the HER was tested for extended periods of time in order to evaluate the change in the electrocatalytic activity of the electrode with operation time. The HER was activation controlled and has not been changed after electrolysis. A constant current density of 100 mA cm{sup}(-2) was applied to the electrolysis system, and the corrosion behavior of the Cu/NiFe-3 electrode was investigated after different operation times using EIS and linear polarization resistance (LPR) techniques. For comparison, the corrosion behavior of a Cu/NiFe-3 electrode to which current was not applied was also investigated. The corrosion tests showed that the corrosion resistance of the Cu/NiFe-3 cathode changed when a cathodic current was applied to the electrolysis system.
机译:在这项研究中,将具有各种化学成分的镍(Cu / Ni),铁(Cu / Fe)和镍铁(Cu / NiFe)复合涂层电化学沉积在铜电极上,并使用循环伏安法(CV),原子吸收进行表征光谱法(AAS),扫描电子显微镜(SEM)和原子力显微镜(AFM)技术,考虑到它们在碱性介质中作为氢释放反应(HER)的电催化材料的可能应用。在1 M KOH溶液中,使用阴极电流电势曲线和电化学阻抗谱(EIS)技术研究了涂层对HER的电催化活性。与单独的镍和铁涂层相比,镍与铁的存在增加了电极对HER的电催化活性。复合涂层的HER活性取决于合金的化学组​​成。发现Cu / NiFe-3电极(在镀浴中,Ni {sup}(2 +):Fe {sup}(2+)的摩尔浓度比为4:6)是最合适的阴极材料。在所研究的实验条件下在碱性介质中的HER。此外,为了评估电极的电催化活性随操作时间的变化,对Cu / NiFe-3电极对HER的电催化活性进行了长时间测试。 HER受活化控制,电解后未发生变化。将恒定电流密度100 mA cm {sup}(-2)应用于电解系统,并使用EIS和线性极化电阻(LPR)技术研究了在不同操作时间后Cu / NiFe-3电极的腐蚀行为。为了比较,还研究了未施加电流的Cu / NiFe-3电极的腐蚀行为。腐蚀试验表明,当向电解系统施加阴极电流时,Cu / NiFe-3阴极的抗腐蚀性发生了变化。

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