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Direct observation of ultrafast coherent exciton dynamics in helical π-stacks of self-assembled perylene bisimides

机译:自组装per双酰亚胺螺旋π堆栈中超快相干激子动力学的直接观察

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摘要

Ever since the discovery of dye self-assemblies in nature, there have been tremendous efforts to exploit biomimetic supramolecular assemblies for tailored artificial photon processing materials. This feature necessarily has resulted in an increasing demand for understanding exciton dynamics in the dye self-assemblies. In a sharp contrast with J-type aggregates, however, the detailed observation of exciton dynamics in H-type aggregates has remained challenging. In this study, as we succeed in measuring transient fluorescence from Frenkel state of π-stacked perylene tetracarboxylic acid bisimide dimer and oligomer aggregates, we present an experimental demonstration on Frenkel exciton dynamics of archetypal columnar π–π stacks of dyes. The analysis of the vibronic peak ratio of the transient fluorescence spectra reveals that unlike the simple π-stacked dimer, the photoexcitation energy in the columnar π-stacked oligomer aggregates is initially delocalized over at least three molecular units and moves coherently along the chain in tens of femtoseconds, preceding excimer formation process.
机译:自从在自然界中发现染料自组装体以来,人们一直在为仿制的人造光子加工材料开发仿生超分子组装体。该特征必然导致对理解染料自组装体中的激子动力学的需求增加。然而,与J型聚集体形成鲜明对比的是,对H型聚集体中激子动力学的详细观察仍然具有挑战性。在这项研究中,由于我们成功地从π堆积的per四羧酸双酰亚胺二聚体和低聚物聚集体的Frenkel态中测量了瞬态荧光,我们提供了原型原型柱状π-π堆积的Frenkel激子动力学的实验证明。对瞬态荧光光谱的振动峰比的分析表明,与简单的π堆叠二聚体不同,圆柱π堆叠低聚物聚集体中的光激发能最初在至少三个分子单元上离域化,并沿链条以数十倍的速度相干移动。飞秒,在准分子形成过程之前。

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