单线态氧
电子转移
光化学
化学
单独一对
质子化
试剂
激进的
单重态
光诱导电子转移
氧气
分子
原子物理学
物理化学
激发态
有机化学
离子
物理
作者
Jung Seung Nam,Youngjoo Hong,Chae Gyu Lee,Tae In Kim,Chaiheon Lee,Deok‐Ho Roh,In Seong Lee,Songa Kweon,Gyunhyeok Ahn,Seung Kyu Min,Byeong‐Su Kim,Tae‐Hyuk Kwon
出处
期刊:JACS Au
[American Chemical Society]
日期:2022-03-29
卷期号:2 (4): 933-942
被引量:16
标识
DOI:10.1021/jacsau.2c00050
摘要
Reactive oxygen species have drawn attention owing to their strong oxidation ability. In particular, the singlet oxygen (1O2) produced by energy transfer is the predominant species for controlling oxidation reactions efficiently. However, conventional 1O2 generators, which rely on enhanced energy transfer, frequently suffer from poor solubility, low stability, and low biocompatibility. Herein, we introduce a hyperbranched aliphatic polyaminoglycerol (hPAG) as a 1O2 generator, which relies on spin-flip-based electron transfer. The coexistence of a lone pair electron on the nitrogen atom and a hydrogen-bonding donor (the protonated form of nitrogen and hydroxyl group) affords proximity between hPAG and O2. Subsequent direct electron transfer after photo-irradiation induces hPAG•+-O2•- formation, and the following spin-flip process generates 1O2. The spin-flip-based electron transfer pathway is analyzed by a series of photophysical, electrochemical, and computational studies. The 1O2 generator, hPAG, is successfully employed in photodynamic therapy and as an antimicrobial reagent.
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