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Atomically Dispersed Co-Pyridinic N-C for Superior Oxygen Reduction Reaction

机译:原子分散的共吡啶N-C,用于优异的氧还原反应

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摘要

Engineering transition metal-nitrogen-carbon (TM-N-C) catalysts with high-density accessible active sites and optimized electronic structure holds great promise in the context of the electrochemical oxygen reduction reaction (ORR). Herein, a novel modification of a lysozyme-modified zeolitic imidazolate framework with isolated Co atoms anchored on dominated pyridinic-N doped carbon (Co-pyridinic N-C) is reported. The atomically dispersed Co allows the maximum active site exposure while the introduction of pyridinic N can greatly reduce the electron localization around the Co centers and improve the interaction with oxygenated species, and thus lowering the energy barriers of the intermediates and facilitating the favorable four-electron ORR pathway. Owing to the synergistic effects of single-atom Co and coordinated pyridinic N, the Co-pyridinic N-C catalyst exhibits an exceptional ORR activity and remarkable stability in both alkaline and more challenging acidic media, representing one of the most active Co-N-C catalysts reported. This work may open an avenue for the rational design of TM-N-C catalysts to boost their catalytic performance for application in the ORR.
机译:工程过渡金属 - 氮 - 碳(TM-N-C)具有高密度可接近的活性位点和优化电子结构的催化剂在电化学氧还原反应(ORR)的背景下具有很大的希望。这里,据报道,据报道将溶菌酶改性的沸石酰亚胺酰胺蛋白框架的新细溶改性与固定在固定的吡啶-N掺杂碳(共吡啶N-C)上锚定的分离的CO原子。原子分散的Co允许最大的活性位点暴露,同时引入吡啶N可以大大减少CO中心周围的电子定位,并改善与含氧物种的相互作用,从而降低中间体的能量屏障并促进有利的四电子的能量屏障。 orr路径。由于单原子Co和协调吡啶N的协同作用,共吡啶N-C催化剂在碱性和更具挑战性酸性培养基中表现出异常的ORR活性和显着的稳定性,代表了报道的最活跃的CO-C催化剂之一。这项工作可以开放TM-N-C催化剂的合理设计途径,以提高它们在ORR中施用的催化性能。

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