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首页> 外文期刊>Angewandte Chemie >Reactivity Descriptors for the Activity of Molecular MN4 Catalysts for the Oxygen Reduction Reaction
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Reactivity Descriptors for the Activity of Molecular MN4 Catalysts for the Oxygen Reduction Reaction

机译:分子MN4催化剂上氧还原反应活性的反应性描述子

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Similarities are established between well-known reactivity descriptors of metal electrodes for their activity in the oxygen reduction reaction (ORR) and the reactivity of molecular catalysts, in particular macrocyclic MN4 metal complexes confined to electrode surfaces. We show that there is a correlation between the MIII/MII redox potential of MN4 chelates and the M-O-2 binding energies. Specifically, the binding energy of O-2 (and other O species) follows the M-III-OH/M-II redox transition for MnN4 and FeN4 chelates. The ORR volcano plot for MN4 catalysts is similar to that for metal catalysts: catalysts on the weak binding side (mostly CoN4 chelates) yield mainly H2O2 as the product, with an ORR onset potential independent of the pH value on the NHE scale (and therefore pH-dependent on the RHE scale); catalysts on the stronger binding side yield H2O as the product with the expected pH-dependence on the NHE scale. The suggested descriptors also apply to heat-treated pyrolyzed MN4 catalysts.
机译:在金属电极在氧还原反应(ORR)中的活性与分子催化剂,特别是局限于电极表面的大环MN4金属络合物的反应性之间,在众所周知的金属电极反应性描述子之间建立了相似性。我们表明,MN4螯合物的MIII / MII氧化还原电位与M-O-2结合能之间存在相关性。具体而言,对于MnN4和FeN4螯合物,O-2(和其他O物种)的结合能遵循M-III-OH / M-II氧化还原转变。 MN4催化剂的ORR火山图与金属催化剂的ORR火山图相似:弱结合侧的催化剂(主要是CoN4螯合物)主要生成H2O2作为产物,其ORR起始电势与NHE规模上的pH值无关。 pH值取决于RHE等级);结合力更强的催化剂生成的H2O为产物,其预期的pH值取决于NHE规模。建议的描述符也适用于热处理的热解MN4催化剂。

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