首页> 外文期刊>Journal of new materials for electrochemical systems >Electrocatalytic behavior of thermally deposited RuO2 into the microporous Raney nickel electrode (Ni-Zn-P-RuO2) towards the HER
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Electrocatalytic behavior of thermally deposited RuO2 into the microporous Raney nickel electrode (Ni-Zn-P-RuO2) towards the HER

机译:热沉积RuO2进入微孔阮内镍电极(Ni-Zn-P-RuO2)对HER的电催化行为

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摘要

The aqueous suspended RuCl3 was coated into the pores of microporous Ni-Zn-P alloy and thermally decomposed at 400 degrees C in an open furnace to produce composite electrodes (Ni-Zn-P-RuO2). The microporous alloy was prepared via a three-step layer-by-layer galvanostatic deposition. The electrocatalytic behavior of the electrode was investigated in the hydrogen evolution reaction (HER), by steady state polarization Tafel curves, electrochemical impedance spectroscopy (EIS), and cyclic voltammetry (CV) in 1M NaOH solution at 25 degrees C. The kinetics as Tafel slopes, double layer capacitances, and charge transfer resistances towards the HER were evaluated. The electrode is characterized by (i) a large real surface area of three orders of magnitude obtained from CV and EIS measurements, and (ii) high physical and electrochemical stability of RuO2 dispersed into the surface. The poisoning effect of cyanide ion on the HER was also studied by EIS. This study allowed us to select properly data for kinetics approximation.
机译:将悬浮的RuCl 3水溶液涂覆到微孔Ni-Zn-P合金的孔中,并在开放式炉中在400℃下热分解以产生复合电极(Ni-Zn-P-RuO 2)。该微孔合金是通过三步逐层恒电流沉积制备的。在25°C的1M NaOH溶液中,通过稳态极化Tafel曲线,电化学阻抗谱(EIS)和循环伏安法(CV),研究了氢气在放氢反应(HER)中的电催化行为。评估了HER的斜率,双层电容和电荷转移电阻。该电极的特征在于(i)通过CV和EIS测量获得的三个数量级的大实际表面积,以及(ii)分散在表面的RuO2的高物理和电化学稳定性。 EIS还研究了氰化物离子对HER的中毒作用。这项研究使我们能够为动力学近似选择适当的数据。

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