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Direct Spectroscopy for Probing the Critical Role of Partial Covalency in Oxygen Reduction Reaction for Cobalt-Manganese Spinel Oxides

机译:直接光谱法探讨部分价电子在钴锰尖晶石氧化物的氧还原反应中的关键作用

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摘要

Nanocrystalline multivalent metal spinels are considered as attractive non-precious oxygen electrocatalysts. Identifying their active sites and understanding their reaction mechanisms are essential to explore novel transition metal (TM) oxides catalysts and further promote their catalytic efficiency. Here we report a systematic investigation, by means of soft X-ray absorption spectroscopy (sXAS), on cubic and tetragonal CoxMn3-xO4 (x = 1, 1.5, 2) spinel oxides as a family of highly active catalysts for the oxygen reduction reaction (ORR). We demonstrate that the ORR activity for oxide catalysts primarily correlates to the partial covalency of between O 2p orbital with Mn4+ 3d t2g-down/eg-up, Mn3+ 3d eg-up and Co3+ 3d eg-up orbitals in octahedron, which is directly revealed by the O K-edge sXAS. Our findings propose the critical influences of the partial covalency between oxygen 2p band and specific metal 3d band on the competition between intermediates displacement of the ORR, and thus highlight the importance of electronic structure in controlling oxide catalytic activity.
机译:纳米晶多价金属尖晶石被认为是有吸引力的非贵金属氧电催化剂。鉴定其活性位点并了解其反应机理对于探索新型过渡金属(TM)氧化物催化剂并进一步提高其催化效率至关重要。在这里,我们报告通过软X射线吸收光谱(sXAS),对立方和四方CoxMn3-xO4(x = 1,1.5,2)尖晶石氧化物作为氧还原反应的高活性催化剂家族进行了系统的研究(ORR)。我们证明了氧化物催化剂的ORR活性主要与O 2p轨道与Mn 4 + 3d t2g-向下/ eg-up,Mn 3 + 之间的部分共价相关。 O K-edge sXAS直接揭示了八面体中的3d eg-up和Co 3 + 3d eg-up轨道。我们的发现提出了氧2p能带和特定金属3d能带之间的部分共价对ORR中间体置换之间竞争的关键影响,因此突出了电子结构在控制氧化物催化活性中的重要性。

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