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首页> 外文期刊>ACS catalysis >Amorphous Cobalt Vanadium Oxide as a Highly Active Electrocatalyst for Oxygen Evolution
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Amorphous Cobalt Vanadium Oxide as a Highly Active Electrocatalyst for Oxygen Evolution

机译:非晶钴钒作为一种高活性电催化剂,用于氧气进化

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摘要

The water-splitting reaction provides a promising mechanism to store renewable energies in the form of hydrogen fuel. The oxidation half-reaction, the oxygen evolution reaction (OER), is a complex four-electron process that constitutes an efficiency bottleneck in water splitting. Here we report a highly active OER catalyst, cobalt vanadium oxide. The catalyst is designed on the basis of a volcano plot of metal-OH bond strength and activity. The catalyst can be synthesized by a facile hydrothermal route. The most active pure-phase material (a-CoVOx) is X-ray amorphous and provides a 10 mA cm(-2) current density at an overpotential of 347 mV in 1 M KOH electrolyte when immobilized on a flat substrate. The synthetic method can also be applied to coat a high-surface-area substrate such as nickel foam. On this three-dimensional substrate, the a-CoVOx catalyst is highly active, reaching 10 mA cm(-2) at 254 mV overpotential, with a Tafel slope of only 35 mV dec(-1). This work demonstrates a-CoVOx as a promising electrocatalyst for oxygen evolution and validates M-OH bond strength as a practical descriptor in OER catalysis.
机译:水分裂反应提供了一种有希望的机制,以呈氢燃料的形式存储可再生能量。氧化半反应,氧进化反应(oer)是复杂的四电子过程,其构成水分裂中的效率瓶颈。在这里,我们报告了一种高活跃的oer催化剂,氧化钴。催化剂基于金属-OH键合强度和活性的火山曲线设计。催化剂可以通过容易的水热途径合成。最活跃的纯相材料(A-Covox)是X射线无定形的,并且在固定在平坦基板上时,在1M KOH电解质中的过电位下提供10mA cm(-2)电流密度。还可以应用合成方法来涂覆诸如镍泡沫的高表面积基板。在该三维基材上,A-Covox催化剂具有高活性,在254mV过电位下达到10mAcm(-2),其特点仅为35mV(-1)。这项工作表明A-Covox作为用于氧气进化的有前途的电催化剂,并将M-OH键合强度验证为OER催化的实用描述符。

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