Enhanced Catalytic Performance of Sn Single-Atom Doped CuO with Oxygen Vacancies for Efficient Epoxidation of α-Olefins

Min Zhang, Gaolei Qin, Pengfei Li, Xiangjie Zhang, Hongying Chang, Ziyu Zhou, Wei Zhao, Xumeng Huang, Kui Tang, Yonghe Ning, Chang Song*, Peng He*

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摘要

Epoxidation of long-chain α-olefins (LAOs) is a process of paramount importance, particularly in the preparation of epoxides. Traditional epoxidation methods, such as the chlorohydrin method and peracid method, suffer from issues such as poor selectivity, by-product formation, and environmental pollution. Mukaiyama epoxidation, with its mild reaction conditions and exceptional selectivity, has attracted widespread attention and considerable research. Transition metal oxide catalysts show potential in the reaction; however, the catalytic efficiency still require substantial improvement due to dilemma of substance activation. In this study, a synergistic enhancement method was employed, achieved through the creation of oxygen vacancies and the electron-rich nature of Cu. The substitution of Cu with Sn in CuO facilitates the creation of oxygen vacancy (Vo), thereby enhancing absorption and activation of O2. The conversion for O2 activation paves the way for the formation of benzoyl peroxy radicals. Moreover, the interaction between Sn and Cu promotes charge transfer from Sn to Cu, resulting in an electron-rich Cu surface that significantly accelerates the dehydrogenation of benzaldehyde. The synergistic enhancement protocol exhibits near-quantitative performance, delivering an oxide yield of 92.9%. This study introduces an innovative dual-promotion catalytic strategy for Mukaiyama epoxidation utilizing readily available O2, providing profound insights into the optimization design of transition metal oxide catalysts and beyond.

源语言英语
文章编号1042
期刊Molecules
30
5
DOI
出版状态已出版 - 3月 2025
已对外发布

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引用此

Zhang, M., Qin, G., Li, P., Zhang, X., Chang, H., Zhou, Z., Zhao, W., Huang, X., Tang, K., Ning, Y., Song, C., & He, P. (2025). Enhanced Catalytic Performance of Sn Single-Atom Doped CuO with Oxygen Vacancies for Efficient Epoxidation of α-Olefins. Molecules, 30(5), 文章 1042. https://doi.org/10.3390/molecules30051042