催化作用
部分
化学
硼酸化
光催化
超分子化学
光化学
猝灭(荧光)
组合化学
电子转移
吩噻嗪
光诱导电子转移
电子受体
接受者
分子
有机化学
芳基
荧光
医学
烷基
物理
量子力学
药理学
凝聚态物理
作者
Hengyu Lin,Zhifeng Xiao,Khoa Le,Tian‐Hao Yan,Peiyu Cai,Yihao Yang,Gregory S. Day,Hannah F. Drake,Haomiao Xie,Riya Bose,Conor Ryan,Christopher H. Hendon,Hong‐Cai Zhou
标识
DOI:10.1002/anie.202214055
摘要
Photo-catalysis by small-molecules is often limited by catalyst degradation and low electron-transfer efficiency. Herein we report a stable N-phenyl-phenothiazine (PTH)-derived porous coordination cage (PCC) as a highly efficient photocatalyst. By the incorporation of the photocatalytic PTH moiety into a PCC, aggregation-induced quenching (AIQ) was shown to be reduced. An improvement in catalyst stability was discovered, ascribed to the synergistic effects of the PTH moieties. The catalyst, operating through a photolytic single-electron transfer, was utilized for photo-catalyzed dehalogenation and borylation. Evaluation of the catalytic mechanism in the borylation reaction showed that the improved performance results from the more efficient formation of the electron donor-acceptor (EDA) complex with the cage. This discovery provides a potential strategy to improve the photophysical properties and stabilities of small-molecule organic photocatalysts via supramolecular chemistry.
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