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苝二酰亚胺四重π堆积的超快激子离域和局域化动力学:非绝热动力学模拟

Ultrafast exciton delocalization and localization dynamics of a perylene bisimide quadruple π-stack: a nonadiabatic dynamics simulation.

作者信息

Zhang Shuang, Zeng Ya-Ping, Wan Xu-Jiang, Xu Dong-Hui, Liu Xiang-Yang, Cui Ganglong, Li Laicai

机构信息

College of Chemistry and Material Science, Sichuan Normal University, Chengdu 610068, China.

Key Laboratory of Theoretical and Computational Photochemistry, Ministry of Education, College of Chemistry, Beijing Normal University, Beijing 100875, China.

出版信息

Phys Chem Chem Phys. 2022 Mar 23;24(12):7293-7302. doi: 10.1039/d2cp00018k.

Abstract

Unraveling the photogenerated exciton dynamics of π-stacked molecular aggregates is of great importance for both fundamental studies and industrial applications. Among various π-stacked molecular aggregates, perylene tetracarboxylic acid bisimide (PBI) based aggregates are regarded as one of the prototypes due to their inherent high fluorescence quantum yield and excellent photostability and flexibility in controlling intermolecular forces chemical modifications. However, the exciton dynamics of these PBI based aggregates remain elusive up to now. In this work, we have first employed LR-TDDFT-based nonadiabatic dynamics simulations and static electronic structure calculations to investigate the ultrafast exciton dynamics of a newly synthesized perylene bisimide quadruple (PBQ) π-stack. Upon photoexcitation, the S to S states are the most likely populated excited states, which can be regarded as a combination of local excited (LE) excitons and charge transfer (CT) excitons of those four PBI chromophores. Then, the excited PBQ π-stack relaxes ultrafast to the lowest lying excited S state within 500 fs, which is accompanied by the complicated exciton conversion as well as exciton localization/delocalization dynamics. In short, the initially populated hybrid LE and CT excitons convert to the LE excitons of B/C and A/D, in which the LE excitons of B/C contribute the most (∼0.44) while the LE excitons of A/D also have minor contributions (0.21), indicating the formation of the localized excimer state. We use the notations A/B/C/D here to represent the four PBI fragments of PBQ π-stacks along the direction perpendicular to the PBI molecular plane. Additionally, using a recently defined root mean square deviation (RMSD) of electron and hole spatial distributions along three Cartesian coordinates, we could investigate the exciton localization/delocalization dynamics in a quantitative way. Our simulation results indicate that the photoinduced electrons and holes of the PBQ π-stack exhibit an ultrafast localization(∼10 fs)-delocalization(∼60 fs)-localization(∼200 fs) dynamics, during which both LE and CT excitons play crucial roles. Our present work is not only consistent with previous experimental studies, but also provides more detailed insights into the relevant processes, which might be useful for the future design of PBI based optoelectronic devices with improved performances.

摘要

揭示π堆积分子聚集体的光生激子动力学对于基础研究和工业应用都具有重要意义。在各种π堆积分子聚集体中,基于苝四羧酸二酰亚胺(PBI)的聚集体因其固有的高荧光量子产率、优异的光稳定性以及在控制分子间作用力和化学修饰方面的灵活性,被视为原型之一。然而,到目前为止,这些基于PBI的聚集体的激子动力学仍然难以捉摸。在这项工作中,我们首先采用基于LR-TDDFT的非绝热动力学模拟和静态电子结构计算,来研究一种新合成的苝二酰亚胺四重(PBQ)π堆积的超快激子动力学。光激发后,S到S态是最有可能被占据的激发态,它可以被看作是四个PBI发色团的局域激发(LE)激子和电荷转移(CT)激子的组合。然后,激发的PBQ π堆积在500 fs内超快弛豫到最低激发S态,这伴随着复杂的激子转换以及激子局域化/离域化动力学。简而言之,最初被占据的混合LE和CT激子转换为B/C和A/D的LE激子,其中B/C的LE激子贡献最大(约0.44),而A/D的LE激子也有较小贡献(0.21),这表明形成了局域化的激基缔合物态。我们在这里使用符号A/B/C/D来表示PBQ π堆积沿垂直于PBI分子平面方向的四个PBI片段。此外,使用最近定义的沿三个笛卡尔坐标的电子和空穴空间分布的均方根偏差(RMSD),我们可以定量地研究激子局域化/离域化动力学。我们的模拟结果表明,PBQ π堆积的光致电子和空穴表现出超快的局域化(约10 fs)-离域化(约60 fs)-局域化(约200 fs)动力学,在此过程中LE和CT激子都起着关键作用。我们目前的工作不仅与先前的实验研究一致,而且还为相关过程提供了更详细的见解,这可能对未来设计性能改进的基于PBI的光电器件有用。

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