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将萘衍生物连接到 BODIPY 上以产生激发三重态和单线态氧:通过电子给体来调谐基于 PET 的光敏剂。

Attaching naphthalene derivatives onto BODIPY for generating excited triplet state and singlet oxygen: Tuning PET-based photosensitizer by electron donors.

机构信息

Institute of Applied Photochemistry & Center of Instrumental Analysis, Hebei Normal University of Science and Technology, Qinhuangdao, Hebei Province 066004, China; MPC Technologies, Hamilton, ON L8S 3H4, Canada.

Institute of Applied Photochemistry & Center of Instrumental Analysis, Hebei Normal University of Science and Technology, Qinhuangdao, Hebei Province 066004, China.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2018 Jan 15;189:13-21. doi: 10.1016/j.saa.2017.08.005. Epub 2017 Aug 3.

Abstract

meso-Naphthalene substituted BODIPY compounds were prepared in a facile one pot reaction. The naphthalene functionalization of BODIPY leads up to a 5-fold increase in the formation efficiency of excited triplet state and singlet oxygen in polar solvents. Steady state and time resolved fluorescence, laser flash photolysis, and quantum chemistry methods were used to reveal the mechanism. All measured data and quantum chemical results suggest that these systems can be viewed as electron donor-acceptor (D-A) pair (BODIPY acts as the acceptor), photoinduced charge transfer (PCT) or photoinduced electron transfer (PET) occurs upon photo excitation (D-A+hν→D-A, 0<δ≤1), and the charge recombination induced the formation of triplet state (D-A→D-A (T). These novel PCT- or PET-based photosensitizers (PSs) show different features from traditional PSs, such as the strong tunability by facile structural modification and good selectivity upon medium polarity. The new character for this type of PSs can lead to important applications in organic oxygenation reactions and photodynamic therapy of tumors.

摘要

介孔萘取代的 BODIPY 化合物可通过简便的一锅反应制备。BODIPY 的萘基官能化导致在极性溶剂中激发三重态和单线态氧的形成效率提高了 5 倍。采用稳态和时间分辨荧光、激光闪光光解和量子化学方法揭示了其机制。所有测量数据和量子化学结果表明,这些体系可以看作是电子给体-受体(D-A)对(BODIPY 作为受体),在光激发时发生光诱导电荷转移(PCT)或光诱导电子转移(PET)(D-A+hν→D-A,0<δ≤1),电荷复合诱导三重态的形成(D-A→D-A(T)。这些新型的基于 PCT 或 PET 的光敏剂(PS)与传统 PS 具有不同的特性,例如通过简便的结构修饰具有很强的可调性,以及在中等极性下具有良好的选择性。这类 PS 的新特性可导致其在有机氧化反应和肿瘤的光动力疗法中具有重要应用。

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