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光激发芘-硼二吡咯分子二元体系中的能量转移和电荷分离动力学

Energy transfer and charge separation dynamics in photoexcited pyrene-bodipy molecular dyads.

作者信息

Fakis M, Beckwith J S, Seintis K, Martinou E, Nançoz C, Karakostas N, Petsalakis I, Pistolis G, Vauthey E

机构信息

Department of Physics, University of Patras, GR-26504, Patras, Greece.

出版信息

Phys Chem Chem Phys. 2018 Jan 3;20(2):837-849. doi: 10.1039/c7cp06914f.

Abstract

The photophysical properties of two pyrene-bodipy molecular dyads, composed of a phenyl-pyrene (Py-Ph) linked to the meso position of a bodipy (BD) molecule with either H-atoms (BD1) or ethyl groups (BD2) at the 2,6 positions, are investigated by stationary, nanosecond and femtosecond spectroscopy. The properties of these dyads (Py-Ph-BD1 and Py-Ph-BD2) are compared to those of their constituent chromophores in two solvents namely 1,2-dichloroethane (DCE) and acetonitrile (ACN). Stationary spectroscopy reveals a weak coupling among the subunits in both dyads. Excitation of the pyrene (Py) subunit leads to emission that is totally governed by the BD subunits in both dyads pointing to excitation energy transfer (EET) from the Py to BD chromophore. Femtosecond fluorescence and transient absorption spectroscopy reveal that EET takes place within 0.3-0.5 ps and is mostly independent of the solvent and the type of the BD subunit. The EET lifetime is in reasonable agreement with that predicted by Förster theory. After EET has taken place, Py-Ph-BD1 in DCE and Py-Ph-BD2 in both solvents decay mainly radiatively to the ground state with 3.5-5.0 ns lifetimes which are similar to those of the individual BD chromophores. However, the excited state of Py-Ph-BD1 in ACN is quenched having a lifetime of 1 ns. This points to the opening of an additional non-radiative channel of the excited state of Py-Ph-BD1 in this solvent, most probably charge separation (CS). Target analysis of the TA spectra has shown that the CS follows inverted kinetics and is substantially slower than the recombination of the charge-separated state. Occurrence of CS with Py-Ph-BD1 in ACN is also supported by energetic considerations. The above results indicate that only a small change in the structure of the BD units incorporated in the dyads significantly affects the excited state dynamics leading either to a dyad with long lifetime and high fluorescence quantum yield or to a dyad with ability to undergo CS.

摘要

通过稳态、纳秒和飞秒光谱研究了两个芘-硼二吡咯分子二元体的光物理性质,这两个二元体由连接到硼二吡咯(BD)分子中位的苯基芘(Py-Ph)组成,在2,6位分别带有氢原子(BD1)或乙基(BD2)。将这些二元体(Py-Ph-BD1和Py-Ph-BD2)的性质与其在两种溶剂(1,2-二氯乙烷(DCE)和乙腈(ACN))中的组成发色团的性质进行了比较。稳态光谱显示两个二元体的亚基之间存在弱耦合。芘(Py)亚基的激发导致发射,在两个二元体中完全由BD亚基控制,这表明存在从Py到BD发色团的激发能量转移(EET)。飞秒荧光和瞬态吸收光谱表明,EET在0.3 - 0.5皮秒内发生,并且大多与溶剂和BD亚基的类型无关。EET寿命与福斯特理论预测的值合理一致。EET发生后,DCE中的Py-Ph-BD1和两种溶剂中的Py-Ph-BD2主要通过辐射衰减到基态,寿命为3.5 - 5.0纳秒,这与单个BD发色团的寿命相似。然而,ACN中Py-Ph-BD1的激发态被猝灭,寿命为1纳秒。这表明在这种溶剂中Py-Ph-BD1的激发态打开了一个额外的非辐射通道,很可能是电荷分离(CS)。TA光谱的目标分析表明,CS遵循反向动力学,并且比电荷分离态的复合慢得多。ACN中Py-Ph-BD1发生CS也得到了能量考虑的支持。上述结果表明,二元体中BD单元结构的微小变化会显著影响激发态动力学,导致产生具有长寿命和高荧光量子产率的二元体或具有进行CS能力的二元体。

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