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Long-Lived Triplet Excited States of Bent-Shaped Pentacene Dimers by Intramolecular Singlet Fission

机译:分子内单重态分裂的弯曲形并五苯二聚体的长寿命三重态激发态。

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Intramolecular singlet fission (ISF) is a promising photophysical process to construct more efficient light energy conversion systems as one excited singlet state converts into two excited triplet states. Herein we synthesized and evaluated bent-shaped pentacene, dimers as a prototype of ISF to reveal intrinsic characters of triplet states (e.g., lifetimes of triplet excited states). In this study, meta-phenylene-bridged TIPS-pentacene dimer (PcD-3Ph) and 2,2'-bipheynyl bridged TIPS-pentacene dimer (PcD-Biph) were newly synthesized as bent-shaped dimers. In the steady-state spectroscopy, absorption and emission bands of these dimers were fully characterized, suggesting the appropriate degree of electronic coupling between pentacene moieties in these dimers. In addition, the electrochemical measurements were also performed to check the electronic interaction between two pentacene moieties. Whereas the successive two oxidation peaks owing to the delocalization were observed in a directly linked-pentacene dimer (PcD) by a single bond, the cyclic voltammograms in PcD-Biph and PcD-3Ph implied the weaker interaction compared to that of p-phenylene-bridged TIPS-pentacene dimer (PcD-4Ph) and PcD. The femtosecond and nanosecond transient absorption spectra clearly revealed the slower ISF process in bent-shaped pentacene dimers (PcD-Biph and PcD-3Ph), more notably, the slower relaxation of the excited triplet states in PcD-Biph and PcD-3Ph. Namely, the quantum yields of triplet states (Phi(T)) by ISF approximately remain constant (ca. 180-200%) in all dimer systems, whereas the lifetimes of the triplet excited states became much longer (up to 360 ns) in PcD-Biph as compared to PcD-4Ph (15 ns). Additionally, the lifetimes of the corresponding triplet states in PcD-Biph and PcD-3Ph were sufficiently affected by, solvent viscosity. In particular, the lifetimes of PcD-Biph triplet state in THF/paraffin (1.0 mu s) increased up to approximately three times as compared to that in THE (360 ns), whereas those of PcD-4Ph were quite similar in both solvent.
机译:分子内单峰裂变(ISF)是一种有前途的光物理过程,可将一个激发的单重态转换为两个激发的三重态,从而构建更有效的光能转换系统。本文中,我们合成并评估了弯曲形状的并五苯,二聚体作为ISF的原型,以揭示三重态的内在特征(例如三重激发态的寿命)。在这项研究中,间苯撑桥联的TIPS-并五苯二聚体(PcD-3Ph)和2,2'-联苯乙炔桥接的TIPS-并五苯二聚体(PcD-Biph)是新合成的弯曲形二聚体。在稳态光谱学中,这些二聚体的吸收和发射带得到了充分表征,表明这些二聚体中并五苯之间的适当电子偶联程度。另外,还进行电化学测量以检查两个并五苯部分之间的电子相互作用。尽管在直接连接的并五苯二聚体(PcD)中通过单键观察到了由于离域而产生的连续两个氧化峰,但与对苯撑甲基相比,PcD-Biph和PcD-3Ph中的循环伏安图表明相互作用较弱。桥接的TIPS-并五苯二聚体(PcD-4Ph)和PcD。飞秒和纳秒的瞬态吸收光谱清楚地表明,弯曲形并五苯二聚体(PcD-Biph和PcD-3Ph)中的ISF过程较慢,更值得注意的是,PcD-Biph和PcD-3Ph中的激发三重态更慢。即,在所有二聚体系统中,ISF产生的三重态的量子产率(Phi(T))大约保持恒定(约180-200%),而三重态激发态的寿命却更长(高达360 ns)。与PcD-4Ph(15 ns)相比,PcD-Biph。此外,溶剂粘度充分影响了PcD-Biph和PcD-3Ph中相应的三重态的寿命。特别是,在THF /石蜡中(1.0μs),PcD-Biph三重态的寿命比在THE(360 ns)中的寿命增加了大约三倍,而在两种溶剂中,PcD-4Ph的寿命却非常相似。

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