Surface Engineered BiVO 4 for Photoelectrochemical Alkene Epoxidation via Bromine Mediation
作者:Qingjie Wang, Linxiao Wu, Haiwen Shi, Jingshan Luo · 发表于:ACS Energy Letters · 年份:2025 · DOI:10.1021/acsenergylett.5c00389 · 被引用次数:11 · 研究领域:Advanced Photocatalysis Techniques、Electrocatalysts for Energy Conversion、Catalytic Processes in Materials Science
Selective epoxidation of alkenes is essential in organic synthesis, yet achieving it under mild conditions presents significant challenges. Photoelectrochemical (PEC) alkene epoxidation driven by hypobromite (BrO –, Br + ) formation offers a green and sustainable route, and enhancing Br + production is essential for achieving high product selectivity. A synergistic strategy that integrates water oxidation to hydrogen peroxide with bromide oxidation to bromine (Br 2 ) using a surface engineered BiVO 4 photoanode is presented. In situ generated H 2 O 2 and Br 2 yield BrO –, which serves as an active brominating (Br + ) agent for alkene epoxidation. Consequently, the surface engineered BiVO 4 photoanode achieves over 98.1 ± 0.79% conversion rate and 91.9 ± 0.99% selectivity across various alkenes. An unbiased PEC tandem device is constructed by coupling a BiVO 4 photoanode for styrene epoxidation with a Cu 2 O photocathode for hydrogen production, achieving simultaneous styrene oxide production with 86.4% selectivity and hydrogen production. Our work provides new insights into PEC organic synthesis and hydrogen production.