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首页> 外文期刊>Energy & environmental science >A survey of diverse earth abundant oxygen evolution electrocatalysts showing enhanced activity from Ni-Fe oxides containing a third metal
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A survey of diverse earth abundant oxygen evolution electrocatalysts showing enhanced activity from Ni-Fe oxides containing a third metal

机译:多种多样的地球富氧放出电催化剂的调查显示,含有第三种金属的镍铁氧化物的活性增强

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摘要

Mixed metal oxides comprise a diverse class of materials that are appealing as potential water oxidation electrocatalysts. Here we report combinatorial screening of nearly 3500 trimetallic A_xB_yC_zO_q mixed metal oxide compositions that led to the discovery of electrocatalysts with enhanced activity relative to, inter alia, the well-studied pure oxides, ABO_3, and AB_2O_4 stoichiometries of those metals. Using a fluorescence-based parallel screening method, we directly detect electrolytic oxygen-evolution activity of catalyst arrays under alkaline conditions. From these data, composition-activity relationships amongst mixed oxides composed of earth-abundant elements have been determined. Significant sustained activity is observed only in the presence of Co or Ni, and the data draw attention to synergistic interactions between these redox-active ions and Lewis-acidic cations, such as Fe, Al, Ga, and Cr. The best activities are observed with oxides composed of Ni and Fe, together with another element.
机译:混合金属氧化物包含多种材料,它们可作为潜在的水氧化电催化剂。在这里,我们报告了近3500种三金属A_xB_yC_zO_q混合金属氧化物组合物的组合筛选,这些组合物导致发现了相对于尤其是经过精心研究的纯金属氧化物ABO_3和AB_2O_4化学计量比具有增强活性的电催化剂。使用基于荧光的平行筛选方法,我们直接检测碱性条件下催化剂阵列的电解氧放出活性。根据这些数据,已经确定了由富含地球的元素组成的混合氧化物之间的组成-活性关系。仅在Co或Ni的存在下才观察到显着的持续活性,并且数据引起人们对这些氧化还原活性离子与路易斯酸性阳离子(例如Fe,Al,Ga和Cr)之间协同作用的关注。在由Ni和Fe以及另一种元素组成的氧化物中观察到最佳的活性。

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  • 来源
    《Energy & environmental science》 |2014年第7期|2376-2382|共7页
  • 作者单位

    Department of Chemistry, University of Wisconsin-Madison, 1101 University Ave, Madison, Wisconsin 53706-1322, USA;

    Department of Chemistry, University of Wisconsin-Madison, 1101 University Ave, Madison, Wisconsin 53706-1322, USA;

    Department of Chemistry, University of Wisconsin-Madison, 1101 University Ave, Madison, Wisconsin 53706-1322, USA;

    Department of Chemistry, University of Wisconsin-Madison, 1101 University Ave, Madison, Wisconsin 53706-1322, USA;

    Department of Chemistry, University of Wisconsin-Madison, 1101 University Ave, Madison, Wisconsin 53706-1322, USA;

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