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首页> 外文期刊>International journal of hydrogen energy >Stoichiometry control and phosphorus doping as strategies for the enhancement of nickel iron spinel oxides as electrocatalysts for water oxidation
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Stoichiometry control and phosphorus doping as strategies for the enhancement of nickel iron spinel oxides as electrocatalysts for water oxidation

机译:化学计量控制和磷掺杂作为增强镍铁尖晶石氧化物作为水催化剂的策略

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摘要

Energy storage and conversion may depend on the development of (photo)electrochemical devices relying on water oxidation. Finding electrode materials based on earth abundant elements is critical in this respect. Multinary transition metal oxides, such as the iron group spinels, can be efficient water oxidation electrocatalysts in alkaline media. Both Nirich and Fe-rich nickel ferrites have been synthesized through a chemical bath method by selecting specific bath temperature and composition. These electrodes, constituted by nanosheets, have been modified by the incorporation of phosphorus (as phosphate) in the structure, leading to either a substantial decrease (of around 0.1 V) in the overvoltage for oxygen evolution or a drastic decrease in the Tafel slope. Phosphate seems to have a dual role: it stabilizes the high oxidation states of surface nickel and probably provides sites for fast proton transfer. Both factors are needed for an efficient oxygen evolution reaction. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:能量存储和转换可能取决于依赖于水氧化的(照片)电化学装置的开发。基于地球优化元素的找到电极材料在这方面至关重要。多元过渡金属氧化物,例如铁基尖晶石,可以是碱性介质中有效的水氧化电催化剂。通过选择特定的浴温和组成,通过化学浴方法合成了尼基和Fe镍铁氧体。由纳米片构成的这些电极通过在结构中掺入磷(作为磷酸盐)来修饰,导致过电压的大量减少(约0.1V)用于氧气进化的过电压或Tafel斜率的急剧下降。磷酸盐似乎具有双重作用:它稳定了表面镍的高氧化状态,并且可能提供快速质子转移的部位。有效的氧气进化反应需要两个因素。 (c)2020氢能量出版物LLC。 elsevier有限公司出版。保留所有权利。

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