Li Sijun, Wang Hua, Ma Zemian, Xiao Qinglan, Gao Qin, Jiang Yimin, Shen Wei, He Rongxing, Li Ming
Key Laboratory of Luminescence Analysis and Molecular Sensing, Ministry of Education, College of Chemistry and Chemical Engineering, Southwest University, Chongqing, 400715, P. R. China.
ChemSusChem. 2021 Dec 17;14(24):5534-5540. doi: 10.1002/cssc.202102020. Epub 2021 Nov 23.
Herein, a transition metal dissolution-oxygen vacancy strategy, based on dissolution of highly oxidized transition metal species in alkaline electrolyte, was suggested to construct a high-performance amorphous Co(OH) /WO (a-CoW) catalyst for the oxygen evolution reaction (OER). The surface reconstruction of a-CoW and its evolution were described by regulating oxygen vacancies. With continuous dissolution of W species, oxygen vacancies on the surface were generated rapidly, the surface reconstruction was promoted, and the OER performance was improved significantly. During the surface reconstruction, W species also played a role in electronic modulation for Co. Due to its rapid surface reconstruction, a-CoW exhibited excellent OER performance in alkaline electrolyte with an overpotential of 208 mV at 10 mA cm and had long-term stability for at least 120 h. This work shows that the transition metal dissolution-oxygen vacancy strategy is effective for preparation of high-performance catalysts.
在此,基于高氧化态过渡金属物种在碱性电解质中的溶解,提出了一种过渡金属溶解-氧空位策略,以构建用于析氧反应(OER)的高性能非晶态Co(OH)/WO(a-CoW)催化剂。通过调节氧空位描述了a-CoW的表面重构及其演变。随着W物种的持续溶解,表面迅速产生氧空位,促进了表面重构,显著提高了OER性能。在表面重构过程中,W物种也对Co起到电子调制作用。由于其快速的表面重构,a-CoW在碱性电解质中表现出优异的OER性能,在10 mA cm时过电位为208 mV,并且具有至少120 h的长期稳定性。这项工作表明,过渡金属溶解-氧空位策略对于制备高性能催化剂是有效的。