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Excitation energy migration in covalently linked perylene bisimide macrocycles

机译:共价连接的bi双酰亚胺大环中的激发能迁移

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A series of acetylene-linked perylene bisimide (PBI) macrocycles 3a-d with various ring sizes from trimer to hexamer have been synthesised by a palladium-catalysed homocoupling reaction of perylene bisimide 1. Photophysical properties of these PBI macrocycles have been examined by steady-state absorption, fluorescence, fluorescence lifetime, fluorescence anisotropy decay, and transient absorption measurements. Both pump-power dependence on the femtosecond transient absorption and the transient absorption anisotropy decay profiles are directly related with the excitation energy migration processes within PBI macrocycles where the exciton-exciton annihilation time and the polarization anisotropy decay time are well described in terms of the Forster-type incoherent energy hopping model. Consequently, the excitation energy hopping times of macrocycles become slower and then saturated as the ring size increases. Nevertheless, the intrinsically large transition dipole moment of PBI leads to fast energy transfer processes as compared to other artificial light-harvesting complexes such as those constructed from porphyrin building blocks.
机译:通过钯催化per双酰亚胺1的均偶联反应,合成了一系列三环到三聚体的具有不同环尺寸的乙炔联per双酰亚胺(PBI)大环3a-d。状态吸收,荧光,荧光寿命,荧光各向异性衰减和瞬态吸收测量。飞秒瞬态吸收的泵浦功率依赖性和瞬态吸收各向异性衰减曲线都与PBI大周期内的激发能迁移过程直接相关,其中激子-激子an灭时间和极化各向异性衰减时间用Forster进行了很好的描述型非相干能量跳跃模型。因此,大环的激发能跳跃时间变慢,然后随着环尺寸的增加而饱和。然而,与其他人工采光复合物(例如由卟啉构件构建的复合物)相比,PBI本质上较大的跃迁偶极矩可导致快速的能量转移过程。

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