Data-driven insights into the fluorescence of asphaltene aggregates using extended Frenkel exciton model

Fangning Ren, Fang Liu
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Abstract

The origin of the fluorescence redshift during asphaltene aggregation remains debated due to the great diversity of asphaltene molecules, while the extended Frenkel exciton model provided a theoretical framework for studying multi-chromophore systems, such as asphaltene aggregates. We investigated the fluorescence energy of hundreds of asphaltene dimers based on 133 experimental revealed asphaltene monomer structures. Our result shows that the dimer's fluorescence energy is always lower than both of its monomers regardless of its intermolecular conformation, with its redshift dominated by superexchange. The dimer oscillator strength predominantly depends on the monomer with the lower fluorescence energy, and the involvement of charge-transfer states and the cancellation between monomer transition dipole moments suppressed the fluorescence especially when two monomers have similar fluorescence energy. The above-mentioned findings hold for all asphaltene dimers despite their diversity, which offers a theoretical interpretation for comprehending the relationship between asphaltene aggregation and its fluorescence variation. Furthermore, this work provides theoretical guidance to other research areas related to organic planar conjugated systems with multiple chromophores.
利用扩展的 Frenkel 激子模型,以数据为导向深入了解沥青质聚合体的荧光特性
由于沥青烯分子的多样性,沥青烯聚集过程中荧光红移的起源仍存在争议,而扩展的 Frenkel 激子模型为研究多色素系统(如沥青烯聚集体)提供了一个理论框架。我们基于 133 个实验揭示的沥青烯单体结构,研究了数百个沥青烯二聚体的荧光能量。结果表明,无论分子间构象如何,二聚体的荧光能量总是低于其两个单体的荧光能量,其红移主要是由超交换引起的。二聚体振荡器的强度主要取决于荧光能量较低的单体,电荷转移态的参与和单体过渡偶极矩之间的抵消抑制了荧光,尤其是当两个单体的荧光能量相近时。尽管沥青烯二聚体具有多样性,但上述发现对所有沥青烯二聚体都适用,这为理解沥青烯聚集与其荧光变化之间的关系提供了理论解释。此外,这项工作还为与具有多个发色团的有机平面共轭体系相关的其他研究领域提供了理论指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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