Tong Yuping, Zhang Zhuo, Hou Yuxin, Yan Liang, Chen Xi, Zhang Hailong, Wang Xiao, Li Yanqiang
School of Materials Science and Engineering, North China University of Water Resources and Electric Power, Zhengzhou, 450045, China.
Nanoscale. 2023 Sep 21;15(36):14717-14736. doi: 10.1039/d3nr02511j.
Electrocatalytic hydrogen evolution reaction (HER) is one of the most promising and clean strategies to prepare hydrogen on a large scale. Nevertheless, the efficiency of HER is greatly restricted by the large overpotential at the anode, and it is necessary to develop low cost electrocatalysts with excellent performance and stability. Molybdenum carbide has shown great potential in the field of HER due to its unique electronic structure and physical and chemical properties. In this paper, the current progress of molybdenum carbide-based catalysts for HER is summarized. The influence of phase structure, nanostructure, heterostructure and heteroatoms doping on its catalytic performance is discussed in detail. Especially, the catalytic mechanisms are analyzed according to structural characterization and theoretical calculation results. Finally, the challenges and prospects for the further development of molybdenum carbide-based catalysts for HER are put forward to guide the progress of this field.
电催化析氢反应(HER)是大规模制备氢气最具前景且清洁的策略之一。然而,阳极上的大过电位极大地限制了HER的效率,因此有必要开发具有优异性能和稳定性的低成本电催化剂。碳化钼因其独特的电子结构以及物理和化学性质,在HER领域展现出了巨大潜力。本文总结了基于碳化钼的HER催化剂的当前进展。详细讨论了相结构、纳米结构、异质结构和杂原子掺杂对其催化性能的影响。特别是,根据结构表征和理论计算结果分析了催化机理。最后,提出了基于碳化钼的HER催化剂进一步发展面临的挑战和前景,以指导该领域的进展。