Fourteen-Membered Macrocyclic Cobalt Complex Structure as a Potential Basis for Durable and Active Non-platinum Group Metal Catalysts for Oxygen Reduction and Hydrogen Evolution Reactions

被引:4
作者
Feng, Zhiqing [1 ]
Ohyama, Junya [2 ,3 ]
Honda, Soutaro [1 ]
Iwata, Yasushi [2 ]
Awaya, Keisuke [2 ]
Machida, Masato [2 ,3 ]
Tsushida, Masayuki [4 ]
Goto, Ryota [5 ]
Ichihara, Takeo [5 ]
Moriya, Makoto [6 ,7 ]
Nabae, Yuta [8 ]
机构
[1] Kumamoto Univ, Grad Sch Sci & Technol, Kumamoto 8608555, Japan
[2] Kumamoto Univ, Fac Adv Sci & Technol, Kumamoto 8608555, Japan
[3] Kumamoto Univ, Inst Ind Nanomat IINa, Kumamoto 8608555, Japan
[4] Kumamoto Univ, Tech Div, Kumamoto 8608555, Japan
[5] Asahi Kasei Corp, Corp R&D, Kurashiki, Okayama 7118510, Japan
[6] Shizuoka Univ, Acad Inst, Coll Sci, Shizuoka 4228529, Japan
[7] Shizuoka Univ, Res Inst Green Sci & Technol, Shizuoka 4228529, Japan
[8] Inst Sci Tokyo, Dept Mat Sci & Engn, Tokyo 1528552, Japan
基金
日本学术振兴会; 日本科学技术振兴机构;
关键词
FE; ELECTROCATALYSTS; ENVIRONMENTS; TRENDS; SITES;
D O I
10.1021/jacs.5c01306
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Non-platinum group metal catalysts for the oxygen reduction reaction (ORR) and hydrogen evolution reaction (HER) under acidic conditions were developed using a CoN4 complex with a 14-membered-ring hexaazamacrocyclic ligand (Co-14MR). The carbon-supported Co-14MR catalyst (Co-14MR/C) showed higher ORR and HER activities than a conventional carbon-supported 16-membered-ring Co phthalocyanine (CoPc/C) catalyst. Heat treatment of Co-14MR/C at 600 degrees C further enhanced its ORR and HER activity through structural modification of the Co active center via deprotonation of ligand amine groups. Density functional theory calculations indicated that the structural modifications of Co-14MR induced by heat treatment adjusted the adsorption energies of important intermediates in the ORR and HER toward optimal values, resulting in enhanced catalytic activity. The Co-14MR/C catalysts also exhibited higher durability in the ORR and HER than CoPc/C and Fe-14MR/C catalysts. Structural analysis suggested that the short Co-N bond lengths and small distortion of the CoN4 active site of the Co-14MR catalysts are the reasons for their high durability. These findings suggest that the Co-14MR structure is a promising design for non-platinum group metal catalysts for proton-exchange membrane fuel cells and water splitting.
引用
收藏
页码:15377 / 15388
页数:12
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