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锚定在氮掺杂碳中的原子级分散的钴锰氮三原子位点实现高效氧还原反应

Atomically Dispersed Co MnN Triatomic Sites Anchored in N-Doped Carbon Enabling Efficient Oxygen Reduction Reaction.

作者信息

Yan Xiaoxiao, Liu Da, Guo Peifang, He Yufei, Wang Xinqiang, Li Zhenglong, Pan Hongge, Sun Dalin, Fang Fang, Wu Renbing

机构信息

Department of Materials Science, Fudan University, Shanghai, 200433, P. R. China.

Institute of Science and Technology for New Energy, Xi'an Technological University, Xi'an, 710021, P. R. China.

出版信息

Adv Mater. 2023 Oct;35(42):e2210975. doi: 10.1002/adma.202210975. Epub 2023 Sep 13.

Abstract

Atomically dispersed transition metal-nitrogen/carbon (M-N/C) catalysts have emerged as the most promising substitutes to the precious platinum counterparts toward the oxygen reduction reaction (ORR). However, the reported M-N/C catalysts are usually in the form of common M-N moieties with only a single metal active site, and they suffer from insufficient activity. Herein, an unusual trinuclear active structure is elaborately developed with a nitrogen-coordinated single Mn atom adjacent to two Co atoms (Co MnN ) anchored in N-doped carbon as a highly efficient ORR catalyst via adsorption-pyrolysis of a bimetallic zeolitic imidazolate framework precursor. Atomic structural investigations and density functional theory (DFT) calculations reveal that Co MnN would experience a spontaneous OH binding to form Co MnN -2OH as the real active site, leading to a single electron-filled state in the orbital and an optimized binding energy of intermediates. Accordingly, the as-developed Co MnN /C exhibits an unprecedented ORR activity with a high half-wave potential of 0.912 V and outstanding stability, not only surpassing the Pt/C catalyst but also representing a new record for the Co-based catalyst.

摘要

原子分散的过渡金属-氮/碳(M-N/C)催化剂已成为在氧还原反应(ORR)中最有希望替代贵金属铂基催化剂的材料。然而,已报道的M-N/C催化剂通常是具有单一金属活性位点的普通M-N部分形式,并且它们的活性不足。在此,通过双金属沸石咪唑酯骨架前驱体的吸附-热解,精心开发了一种不寻常的三核活性结构,其中一个氮配位的单个锰原子与两个钴原子相邻(CoMnN)锚定在氮掺杂碳中,作为一种高效的ORR催化剂。原子结构研究和密度泛函理论(DFT)计算表明,CoMnN会经历自发的OH结合形成CoMnN-2OH作为真正的活性位点,导致轨道中出现单电子填充状态以及中间体的结合能得到优化。因此,所开发的CoMnN/C表现出前所未有的ORR活性,具有0.912 V的高半波电位和出色的稳定性,不仅超过了Pt/C催化剂,而且代表了钴基催化剂的新纪录。

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