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In Situ Electrochemical Oxidation Tuning of Transition Metal Disulfides to Oxides for Enhanced Water Oxidation

机译:过渡金属二硫化物到氧化物的原位电化学氧化调节,以增强水的氧化

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The development of catalysts with earth-abundant elements for efficient oxygen evolution reactions is of paramount significance for clean and sustainable energy storage and conversion devices. Our group demonstrated recently that the electrochemical tuning of catalysts via lithium insertion and extraction has emerged as a powerful approach to improve catalytic activity. Here we report a novel in situ electrochemical oxidation tuning approach to develop a series of binary, ternary, and quaternary transition metal (e.g., Co, Ni, Fe) oxides from their corresponding sulfides as highly active catalysts for much enhanced water oxidation. The electrochemically tuned cobalt–nickel–iron oxides grown directly on the three-dimensional carbon fiber electrodes exhibit a low overpotential of 232 mV at current density of 10 mA cm–2, small Tafel slope of 37.6 mV dec–1, and exceptional long-term stability of electrolysis for over 100 h in 1 M KOH alkaline medium, superior to most non-noble oxygen evolution catalysts reported so far. The materials evolution associated with the electrochemical oxidation tuning is systematically investigated by various characterizations, manifesting that the improved activities are attributed to the significant grain size reduction and increase of surface area and electroactive sites. This work provides a promising strategy to develop electrocatalysts for large-scale water-splitting systems and many other applications.
机译:开发具有丰富地球元素的催化剂以进行有效的氧气释放反应,对于清洁,可持续的能源存储和转换设备至关重要。我们的小组最近证明,通过锂的插入和萃取对催化剂进行电化学调节已经成为提高催化活性的有效方法。在这里,我们报告了一种新颖的原位电化学氧化调节方法,可从其相应的硫化物中开发出一系列二元,三元和四元过渡金属(例如Co,Ni,Fe)氧化物,以作为高活性催化剂来大大增强水的氧化能力。直接在三维碳纤维电极上生长的电化学调谐钴-镍-铁氧化物在10 mA cm-2的电流密度下显示出232 mV的低过电势,Tafel斜率在dec-1时小,为37.6 mV,并且异常长在1 M KOH碱性介质中电解100个小时以上的长期稳定性,优于迄今为止报道的大多数非贵金属放氧催化剂。通过各种表征系统地研究了与电化学氧化调节有关的材料演变,表明改进的活性归因于明显的晶粒尺寸减小以及表面积和电活性位点的增加。这项工作为开发用于大型水分解系统和许多其他应用的电催化剂提供了一种有希望的策略。

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