Precise Construction of Asymmetrically Coordinated PtCuZn Trimetallic Atom Catalysts for Efficient Oxygen Reduction
Abstract
Abstract With advancements in the study of catalysts at atomic sites, the unique and predictable characteristics of atomic models have enabled the exploration of catalysts with monoatomic, diatomic, and polymetallic centers. In this study, a platinum‐copper‐zinc trimetallic catalyst (named PtCuZn/SNC) was synthesized by the spatial confinement method and polymer coating method. This triatomic catalyst facilitates electronic interaction and charge redistribution among the three metal atoms, optimizing the adsorption and desorption of reaction intermediates and thereby exhibiting excellent performance in acidic oxygen reduction reactions. In the oxygen reduction reaction test, a high half‐wave potential of 0.859 V and an impressive energy density of 532 mW cm −2 were achieved in fuel cell tests, demonstrating the outstanding catalytic performance of the catalyst. These findings suggest that the design and synthesis of monodisperse triatomic catalysts provide a promising route to improve the efficiency of H 2 /O 2 fuel cells.
Article Details
Authors (11)
Yuexin Guo
Zedong Zhang
School of Materials Science and Engineering
Dengyu Chen
Co‐Innovation Center of Efficient Processing and Utilization of Forest Resources, College of Materials Science and Engineering Nanjing Forestry University Nanjing 210037 P.R. China
Xilin Zhang
Xiangqing Wang
School of Pharmacy North China University of Science and Technology Tangshan 063210 P.R. China
Zhiyi Sun
Rui Su
Yuhai Dou
Institute of Energy Materials Science
Wenxing Chen
School of Materials Science and Engineering
Dingsheng Wang
Department of Chemistry
Yadong Li
Department of Chemistry