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首页> 外文期刊>International journal of hydrogen energy >Nanostructured Ni-Go alloy electrodes for both hydrogen and oxygen evolution reaction in alkaline electrolyzer
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Nanostructured Ni-Go alloy electrodes for both hydrogen and oxygen evolution reaction in alkaline electrolyzer

机译:碱性电解槽中氢气和氧进化反应的纳米结构Ni-Go合金电极

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摘要

Ni-Co alloy nanostructured electrodes with high surface area were investigated both as a cathode and anode for an alkaline electrolyzer. Electrodes were obtained by template electrosynthesis at room temperature. The electrolyte composition was tuned in order to obtain different NiCo alloys. The chemical and morphological features of nanostructured electrodes were evaluated by EDS, XRD and SEM analyses. Results show that electrodes with different composition of Ni and Co, made of nanowires well anchored to the substrate, were obtained. For both hydrogen and oxygen evolution reactions, electrochemical and electrocatalytic tests, performed in 30% w/w KOH aqueous solution, were carried out to establishing the best alloy composition. Mid-term tests conducted at a constant current density were also reported. Nanostructured electrodes with a Co atomic composition of 94.73% have the best performances for both hydrogen and oxygen evolution reactions. In particular, with this alloy, a potential of -0.43 V (RHE) and of 1.615 V (RHE) was measured for hydrogen and oxygen evolution reaction at -50 mA cm(-2) and at 50 mA cm(-2), respectively, after 6 h of electrolysis. The calculated Tafel's slopes for HER and OER were -0.105 and 0.088 V/dec, respectively. Furthermore, HER and OER eta(10) potential values were measured founding -0.231 V (RHE) and 1.494 V (RHE) respectively. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:将Ni-Co合金纳米结构电极作为阴极和阳极研究碱性电解槽。通过在室温下通过模板电织液获得电极。调节电解质组合物以获得不同的Nico合金。通过EDS,XRD和SEM分析评估纳米结构电极的化学和形态特征。结果表明,基于锚固到基材的纳米线组成的具有不同组成的电极和CO的电极。对于氢气和氧化反应,在30%w / w koh水溶液中进行的电化学和电催化试验以建立最佳合金组合物。还报道了在恒定电流密度下进行的中期试验。具有94.73%的CO原子组成的纳米结构电极具有氢气和氧气进化反应的最佳性能。特别地,用这种合金,测量-0.43V(RHE)和1.615V(RHE)的电位,用于在-50mA cm(-2)和50mA cm(-2)处,电解6小时后分别为6小时。计算的TAFEL的她和OER的斜率分别为-0.105和0.088 V / DEC。此外,她和OER ETA(10)潜在值分别测量-0.231V(RHE)和1.494V(RHE)。 (c)2020氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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