State Key Laboratory of Fine Chemicals, School of Chemical Engineering, Dalian University of Technology, E-208 West Campus, 2 Ling-Gong Road, Dalian 116024, PR China.
J Org Chem. 2012 Jul 20;77(14):6166-78. doi: 10.1021/jo300943t. Epub 2012 Jul 12.
Bodipy derivatives containing excited state intramolecular proton transfer (ESIPT) chromophores 2-(2-hydroxyphenyl) benzothiazole and benzoxazole (HBT and HBO) subunits were prepared (7-10). The compounds show red-shifted UV-vis absorption (530-580 nm; ε up to 50000 M(-1) cm(-1)) and emission compared to both HBT/HBO and Bodipy. The new chromophores show small Stokes shift (45 nm) and high fluorescence quantum yields (Φ(F) up to 36%), which are in stark contrast to HBT and HBO (Stokes shift up to 180 nm and Φ(F) as low as 0.6%). On the basis of steady state and time-resolved absorption spectroscopy, as well as DFT/TDDFT calculations, we propose that 7-9 do not undergo ESIPT upon photoexcitation. Interestingly, nanosecond time-resolved transient absorption spectroscopy demonstrated that Bodipy-localized triplet excited states were populated for 7-10 upon photoexcitation; the lifetimes of the triplet excited states (τ(T)) are up to 195 μs. DFT calculations confirm the transient absorptions are due to the triplet state. Different from the previous report, we demonstrated that population of the triplet excited states is not the result of ESIPT. The compounds were used as organic triplet photosensitizers for photooxidation of 1,5-dihydroxylnaphthalene. One of the compounds is more efficient than the conventional [Ir(ppy)(2)(phen)][PF(6)] triplet photosensitizer. Our result will be useful for design of new Bodipy derivatives, ESIPT compounds, and organic triplet photosensitizers, as well as for applications of these compounds in photovoltaics, photocatalysis and luminescent materials, etc.
含激发态分子内质子转移(ESIPT)生色团 2-(2-羟基苯基)苯并噻唑和苯并恶唑(HBT 和 HBO)单元的 Bodipy 衍生物已被制备(7-10)。与 HBT/HBO 和 Bodipy 相比,这些化合物表现出红移的紫外可见吸收(530-580nm;ε高达 50000 M(-1) cm(-1))和发射。新生色团显示出较小的斯托克斯位移(45nm)和较高的荧光量子产率(Φ(F)高达 36%),这与 HBT 和 HBO 形成鲜明对比(斯托克斯位移高达 180nm,Φ(F)低至 0.6%)。基于稳态和时间分辨吸收光谱以及 DFT/TDDFT 计算,我们提出 7-9 在光激发时不会发生 ESIPT。有趣的是,纳秒时间分辨瞬态吸收光谱表明,7-10 在光激发时会产生 Bodipy 局域三重态激发态;三重态激发态的寿命(τ(T))长达 195μs。DFT 计算证实瞬态吸收是由于三重态。与之前的报道不同,我们证明三重态激发态的产生不是 ESIPT 的结果。这些化合物被用作有机三重态光敏剂,用于 1,5-二羟基萘的光氧化。其中一种化合物比传统的 [Ir(ppy)(2)(phen)][PF(6)]三重态光敏剂更有效。我们的结果将有助于设计新的 Bodipy 衍生物、ESIPT 化合物和有机三重态光敏剂,以及将这些化合物应用于光伏、光催化和发光材料等领域。