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Electrocatalytic Activation Of Ni Electrode For Hydrogen Production By Electrodeposition Of Co And V Species

机译:钴和钒物种的电沉积制氢用镍电极的电催化活化

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Hydrogen is considered to be the most promising candidate as a future energy carrier. One of the most used technologies for the electrolytic hydrogen production is alkaline water electrolysis. Electrode materials used in alkaline water electrolysis are mainly made from Ni or Ni-based alloys due to their desirable mechanical and chemical stability in hot and alkaline solution. Considerable research effort has been conducted on enhancement of electrocatalytic activity of Ni electrodes.rnElectrocatalytic activity of Ni electrode for the hydrogen evolution reaction (HER) in alkaline solution was compared to the electrode made from electrodeposition of Co and Co-V species on Ni support electrode using ac and dc electrochemical techniques. Analysis of Tafel polarization curves for the HER in alkaline solution reveals an increased electrocatalytic activity of the electrodeposited electrodes if compared to the Ni. This was additionally proved by measuring energy input (overpotential) for the given hydrogen production (fixed current density) and vice versa. Electrochemical impedance spectroscopy was applied in order to investigate the obtained effect of electrodeposited electrodes. It was found that the apparent electrochemical surface of investigated electrodes was significantly increased by the process of electrodeposition.
机译:氢被认为是未来能源载体中最有希望的候选者。电解氢生产中最常用的技术之一是碱性水电解。碱性水电解中使用的电极材料主要由Ni或Ni基合金制成,因为它们在热和碱性溶液中具有理想的机械和化学稳定性。在提高镍电极的电催化活性方面已经进行了大量的研究工作。rn将镍电极在碱性溶液中对氢发生反应(HER)的电催化活性与在镍载体电极上电沉积Co和Co-V物种制成的电极进行了比较。使用交流和直流电化学技术。对HER在碱性溶液中的Tafel极化曲线的分析表明,与Ni相比,电沉积电极的电催化活性增强。通过测量给定氢气产量(固定电流密度)的能量输入(超电势)来证明这一点,反之亦然。为了研究电沉积电极的效果,应用了电化学阻抗谱。发现电沉积过程显着增加了所研究电极的表观电化学表面。

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