Jiang Shuangshuang, Chen Fugang, Zhu Li, Yang Zhanzhan, Lin Yu, Xu Quanhui, Wang Yingang
College of Materials Science and Technology, Nanjing University of Aeronautics and Astronautics, Nanjing 211106, China.
School of Materials Science and Engineering, Jiangsu University of Science and Technology, Zhenjiang 212003, China.
ACS Appl Mater Interfaces. 2022 Mar 2;14(8):10227-10236. doi: 10.1021/acsami.1c19936. Epub 2022 Feb 16.
Slow kinetics in the oxygen evolution reaction (OER) remains a Gordian knot to develop an efficient and cost-effective electrocatalyst in electrochemical water splitting. In recent studies, either a synergistic effect on multimetallic catalysts or spin polarization in ferromagnetic materials is considered as a desirable way to improve water electrolysis. Herein, the OER performance of amorphous FeNiCo-based multimetallic catalysts with adjustable composition was investigated from the perspective of atomic structure. Mössbauer spectra results demonstrate that the OER activities exhibit a significant dependence on the local structure of catalysts in which a catalyst with a high content of Fe clusters of low coordination numbers tends to obtain higher activity. Furthermore, benefiting from the spin polarization of these ferromagnetic catalysts, the OER activity is notably enhanced in the presence of a magnetic field. In particular, overpotential reduction exceeding 20 mV (above 100 mA cm) in alkaline OER performance is observed for strong ferromagnetic catalysts in comparison with the weak ferromagnetic ones. An increment of 65.2% in turnover frequency is achieved for the catalyst with the strongest ferromagnetism. This magnetic enhancement strategy affords an effective way of improving the water oxidation performance on amorphous ferromagnetic catalysts.
在电化学水分解中,析氧反应(OER)的缓慢动力学仍然是开发高效且经济高效的电催化剂的一个棘手问题。在最近的研究中,多金属催化剂上的协同效应或铁磁材料中的自旋极化被认为是改善水电解的理想方法。在此,从原子结构的角度研究了组成可调的非晶态FeNiCo基多金属催化剂的OER性能。穆斯堡尔谱结果表明,OER活性对催化剂的局部结构有显著依赖性,其中低配位数Fe簇含量高的催化剂往往具有更高的活性。此外,受益于这些铁磁催化剂的自旋极化,在磁场存在下OER活性显著增强。特别是,与弱铁磁催化剂相比,强铁磁催化剂在碱性OER性能中观察到过电位降低超过20 mV(高于100 mA cm)。铁磁性最强的催化剂的周转频率提高了65.2%。这种磁增强策略为提高非晶态铁磁催化剂上的水氧化性能提供了一种有效方法。