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Biphasic aggregation of a perylene bisimide dye identified by exciton-vibrational spectra

机译:通过激子振动光谱鉴定a双酰亚胺染料的双相聚集

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摘要

The quantum efficiency of light emission is a crucial parameter of supramolecular aggregates that can be tuned by the molecular design of the monomeric species. Here, we report on a strong variation of the fluorescence quantum yield due to different phases of aggregation for the case of a perylene bisimide dye. In particular, a change of the dominant aggregation character from H- to J-type within the first aggregation steps is found, explaining the observed dramatic change in quantum yield. This behaviour is rationalised by means of a systematic study of the intermolecular potential energy surfaces using the time-dependent density functional based tight-binding (TD-DFTB) method. This provides a correlation between structural changes and a coupling strength and supports the notion of H-type stacked dimers and J-type stack-slipped dimers. The exciton-vibrational level structure is modelled by means of an excitonic dimer model including two effective vibrational modes per monomer. Calculated absorption and fluorescence spectra are found to be in reasonable agreement with experimental ones, thus supporting the conclusion on the aggregation behaviour.
机译:发光的量子效率是超分子聚集体的关键参数,可以通过单体物种的分子设计对其进行调节。在这里,我们报道了bi双酰亚胺染料情况下由于聚集的不同相而导致的荧光量子产率的强烈变化。特别是,在最初的聚集步骤中发现了主要聚集特征从H型变为J型的变化,这解释了观察到的量子产率的急剧变化。通过使用基于时间的基于密度泛函的紧密结合(TD-DFTB)方法对分子间势能表面进行系统研究,可以合理化这种行为。这提供了结构变化与耦合强度之间的相关性,并支持了H型堆叠二聚体和J型堆叠滑动二聚体的概念。激子-振动能级结构是通过激子二聚体模型建模的,每个单体包含两个有效的振动模式。计算得出的吸收光谱和荧光光谱与实验结果基本吻合,从而支持了有关聚集行为的结论。

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