催化作用
醌
共价键
化学
蒽醌
激进的
猝灭(荧光)
单线态氧
层状结构
双酚A
共价有机骨架
降级(电信)
光化学
氧气
有机化学
荧光
结晶学
电信
物理
量子力学
计算机科学
环氧树脂
作者
Tao Yuan,Yu Hou,Huangsheng Yang,Zeyu Gong,Jiaxing Yu,Huajie Zhong,Qi Fu,Junhui Wang,Fang Zhu,Gangfeng Ouyang
标识
DOI:10.1073/pnas.2401175121
摘要
Singlet oxygen ( 1 O 2 ) is important in the environmental remediation field, however, its efficient production has been severely hindered by the ultrafast self-quenching of the as-generated radical precursors in the Fenton-like reactions. Herein, we elaborately designed lamellar anthraquinone-based covalent organic frameworks (DAQ-COF) with sequential localization of the active sites (C═O) at molecular levels for visible-light-assisted peroxymonosulfate (PMS) activation. Theoretical and experimental results revealed that the radical precursors (SO 5 ·− ) were formed in the nearby layers with the migration distance less than 0.34 nm, via PMS donating electrons to the photogenerated holes. This interlayer synergistic effect eventually led to ultraefficient 1 O 2 production (14.8 μM s −1 ), which is 12 times that of the highest reported catalyst. As an outcome, DAQ-COF enabled the complete degradation of bisphenol A in 5 min with PMS under natural sunlight irradiation. This interlayer synergistic concept represents an innovative and effective strategy to increase the utilization efficiency of ultrashort-lived radical precursors, providing inspirations for subtle structural construction of Fenton-like catalysts.
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