State Key Laboratory of Advanced Technology for Materials Synthesis and Processing, International School of Materials Science and Engineering, Wuhan University of Technology, Wuhan, 430070, P. R. China.
Department of Materials Science and Engineering, and BIC-ESAT, College of Engineering, Peking University, Beijing, 100871, P. R. China.
Adv Mater. 2018 Oct;30(43):e1803220. doi: 10.1002/adma.201803220. Epub 2018 Sep 10.
Iron-nitrogen-carbon (Fe-N-C) is hitherto considered as one of the most satisfactory alternatives to platinum for the oxygen reduction reaction (ORR). Major efforts currently are devoted to the identification and maximization of carbon-enclosed FeN moieties, which act as catalytically active centers. However, fine-tuning of their intrinsic ORR activity remains a huge challenge. Herein, a twofold activity improvement of pristine Fe-N-C through introducing Ti C T MXene as a support is realized. A series of spectroscopy and magnetic measurements reveal that the marriage of FeN moiety and MXene can induce remarkable Fe 3d electron delocalization and spin-state transition of Fe(II) ions. The lower local electron density and higher spin state of the Fe(II) centers greatly favor the Fe electron transfer, and lead to an easier oxygen adsorption and reduction on active FeN sites, and thus an enhanced ORR activity. The optimized catalyst shows a two- and fivefold higher specific ORR activity than those of pristine catalyst and Pt/C, respectively, even exceeding most Fe-N-C catalysts ever reported. This work opens up a new pathway in the rational design of Fe-N-C catalysts, and reflects the critical influence of Fe 3d electron states in FeN moiety supported on MXene in ORR catalysis.
铁-氮-碳(Fe-N-C)被认为是迄今为止最有前途的铂基氧还原反应(ORR)催化剂替代品之一。目前,主要的努力集中在识别和最大化作为催化活性中心的碳封闭的 FeN 基团。然而,精细调整其内在的 ORR 活性仍然是一个巨大的挑战。本文通过引入 TiC T MXene 作为载体,实现了原始 Fe-N-C 的两倍活性提高。一系列光谱和磁性测量表明,FeN 基团和 MXene 的结合可以诱导显著的 Fe 3d 电子离域和 Fe(II)离子的自旋态跃迁。Fe(II)中心较低的局部电子密度和较高的自旋态有利于 Fe 电子转移,导致在活性 FeN 位上更容易吸附和还原氧气,从而提高了 ORR 活性。优化后的催化剂的比 ORR 活性分别比原始催化剂和 Pt/C 高 2 倍和 5 倍,甚至超过了大多数已报道的 Fe-N-C 催化剂。这项工作为 Fe-N-C 催化剂的合理设计开辟了一条新途径,反映了在 ORR 催化中,支撑在 MXene 上的 FeN 基团中 Fe 3d 电子态的关键影响。