Molecularly Engineered Covalent Organic Frameworks for Hydrogen Peroxide Photosynthesis

Authors:Kou, Mingpu; Wang, Yongye; Xu, Yixue; Ye, Liqun*; Huang, Yingping; Jia, Baohua; Li, Hui; Ren, Jiaqi; Deng, Yu; Chen, Jiahao; Zhou, Ying; Lei, Kai; Wang, Li; Liu, Wei; Huang, Hongwei; Ma, Tianyi*
Source:Angewandte Chemie - International Edition, 2022, 61(19): e202200413.
DOI:10.1002/anie.202200413

Summary

Synthesizing H2O2 from water and air via a photocatalytic approach is ideal for efficient production of this chemical at small-scale. However, the poor activity and selectivity of the 2 e(-) water oxidation reaction (WOR) greatly restricts the efficiency of photocatalytic H2O2 production. Herein we prepare a bipyridine-based covalent organic framework photocatalyst (denoted as COF-TfpBpy) for H2O2 production from water and air. The solar-to-chemical conversion (SCC) efficiency at 298 K and 333 K is 0.57 % and 1.08 %, respectively, which are higher than the current reported highest value. The resulting H2O2 solution is capable of degrading pollutants. A mechanistic study revealed that the excellent photocatalytic activity of COF-TfpBpy is due to the protonation of bipyridine monomer, which promotes the rate-determining reaction (2 e(-) WOR) and then enhances Yeager-type oxygen adsorption to accelerate 2 e(-) one-step oxygen reduction. This work demonstrates, for the first time, the COF-catalyzed photosynthesis of H2O2 from water and air; and paves the way for wastewater treatment using photocatalytic H2O2 solution.

  • Institution
    西南石油大学; 华中科技大学

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