Feng Zhiqing, Ohyama Junya, Honda Soutaro, Iwata Yasushi, Awaya Keisuke, Machida Masato, Tsushida Masayuki, Goto Ryota, Ichihara Takeo, Moriya Makoto, Nabae Yuta
Graduate School of Science and Technology, Kumamoto University, 2-39-1 Kurokami, Chuo-ku, Kumamoto 860-8555, Japan.
Faculty of Advanced Science and Technology, Kumamoto University, 2-39-1 Kurokami, Chuo-ku, Kumamoto 860-8555, Japan.
J Am Chem Soc. 2025 May 7;147(18):15377-15388. doi: 10.1021/jacs.5c01306. Epub 2025 Apr 25.
Non-platinum group metal catalysts for the oxygen reduction reaction (ORR) and hydrogen evolution reaction (HER) under acidic conditions were developed using a CoN 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 °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 CoN 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.
利用一种带有14元环六氮大环配体的钴氮配合物(Co-14MR),开发了用于酸性条件下氧还原反应(ORR)和析氢反应(HER)的非铂族金属催化剂。碳载Co-14MR催化剂(Co-14MR/C)比传统的碳载16元环钴酞菁(CoPc/C)催化剂表现出更高的ORR和HER活性。在600℃对Co-14MR/C进行热处理,通过配体胺基的去质子化对钴活性中心进行结构修饰,进一步提高了其ORR和HER活性。密度泛函理论计算表明,热处理引起的Co-14MR结构修饰将ORR和HER中重要中间体的吸附能调整到最佳值,从而提高了催化活性。Co-14MR/C催化剂在ORR和HER中也比CoPc/C和Fe-14MR/C催化剂表现出更高的耐久性。结构分析表明,Co-14MR催化剂中较短的Co-N键长和CoN活性位点的小畸变是其高耐久性的原因。这些发现表明,Co-14MR结构是质子交换膜燃料电池和水分解用非铂族金属催化剂的一种有前景的设计。