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首页> 外文期刊>Electrochimica Acta >Kinetics of hydrogen evolution reaction on nanocrystalline electrodeposited Ni{sub}62Fe{sub}35C{sub}3 cathode in alkaline solution by electrochemical impedance spectroscopy
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Kinetics of hydrogen evolution reaction on nanocrystalline electrodeposited Ni{sub}62Fe{sub}35C{sub}3 cathode in alkaline solution by electrochemical impedance spectroscopy

机译:电化学阻抗谱法研究碱性溶液中纳米晶电沉积Ni {sub} 62Fe {sub} 35C {sub} 3阴极上析氢的动力学

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摘要

Ternary nickel-iron-carbon (Ni-Fe-C) alloys have been characterized by means of microstructural and electrochemical techniques in view of their possible applications as electrocatalytic materials for hydrogen evolution reaction (HER). The electrochem ical efficiency of the electrodes has been evaluated on the basis of electrochemical data obtained from the steady-state polarization Tafel curves, electrochemical impedance spectroscopy (EIS) and cyclic voltammetry (CV) in 1M NaOH solution at 298 K in the absence and presence of cyanide ion as the poison. Steady-state polarization Tafel curves showed that the Ni-Fe-C electrodes were apparently active for the HER. Therefore, the EIS studies were performed to obtain more precise data and find the source of activity. A surface roughness of more than three orders of magnitude was observed for Ni{sub}62Fe{sub}35C{sub}3 electrode. The rate constants of the forward and backward reactions of Volmer and Heyrovsky steps were estimated by using Tafel-impedance data. A comparison between the values obtained for R{sub}f by the EIS and the values obtained for k{sub}2 by approximation of Tafel-impedance data revealed that the increase in activity of Ni{sub}62Fe{sub}35C{sub}3 electrode toward the HER was partially (20%) originated from increase in the surface roughness, and mostly (80%) from increase in the intrinsic activity.
机译:考虑到三元镍-铁-碳(Ni-Fe-C)合金可能用作氢析出反应(HER)的电催化材料,已经通过微结构和电化学技术对其进行了表征。电极的电化学效率已根据在不存在和存在下在298 K下在1M NaOH溶液中的稳态极化Tafel曲线,电化学阻抗谱(EIS)和循环伏安法(CV)获得的电化学数据进行了评估氰离子作为毒物。稳态极化Tafel曲线表明Ni-Fe-C电极对HER具有明显的活性。因此,进行EIS研究以获得更精确的数据并找到活动的来源。 Ni {sub} 62Fe {sub} 35C {sub} 3电极的表面粗糙度超过三个数量级。 Volmer和Heyrovsky步骤向前和向后反应的速率常数是通过使用Tafel阻抗数据估算的。通过EIS获得的R {sub} f值与通过Tafel阻抗数据近似获得的k {sub} 2值之间的比较表明,Ni {sub} 62Fe {sub} 35C {sub } 3电极朝向HER的一部分(20%)来自表面粗糙度的增加,而大部分(80%)来自内在活性的增加。

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