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一次解析一个分子中多个三重态激子的群体动力学和相互作用。

Resolving population dynamics and interactions of multiple triplet excitons one molecule at a time.

作者信息

Datko Benjamin D, Grimm Ryan, Walwark David J, Burnside Brandon, Grey John K

机构信息

Department of Chemistry and Chemical Biology, University of New Mexico, Albuquerque, New Mexico 87131, USA.

出版信息

J Chem Phys. 2019 Jul 28;151(4):044203. doi: 10.1063/1.5099920.

Abstract

Resolving the population dynamics of multiple triplet excitons on time scales comparable to their lifetimes is a key challenge for multiexciton harvesting strategies, such as singlet fission. We show that this information can be obtained from fluorescence quenching dynamics and stochastic kinetic modeling simulations of single nanoparticles comprising self-assembled aggregated chains of poly(3-hexylthiophene) (P3HT). These multichromophoric structures exhibit the elusive J-aggregate type excitonic coupling leading to delocalized intrachain excitons that undergo facile triplet formation mediated by interchain charge transfer states. We propose that P3HT J-aggregates can serve as a useful testbed for elucidating the presence of multiple triplets and understanding factors governing their interactions over a broad range of time scales. Stochastic kinetic modeling is then used to simulate discrete population dynamics and estimate higher order rate constants associated with triplet-triplet and singlet-triplet annihilation. Together with the quasi-CW nature of the experiment, the model reveals the expected amounts of triplets at equilibrium per molecule. Our approach is also amenable to a variety of other systems, e.g., singlet fission active molecular arrays, and can potentially inform design and optimization strategies to improve triplet harvesting yields.

摘要

在与多重激子寿命相当的时间尺度上解析多个三重态激子的种群动态,是诸如单线态裂变等多激子捕获策略面临的关键挑战。我们表明,该信息可从包含聚(3-己基噻吩)(P3HT)自组装聚集链的单个纳米颗粒的荧光猝灭动力学和随机动力学建模模拟中获得。这些多发色团结构表现出难以捉摸的J-聚集体型激子耦合,导致链内离域激子,其通过链间电荷转移态进行快速三重态形成。我们提出,P3HT J-聚集体可作为一个有用的试验台,用于阐明多个三重态的存在,并理解在广泛时间尺度上控制其相互作用的因素。然后,使用随机动力学建模来模拟离散种群动态,并估计与三重态-三重态和单线态-三重态湮灭相关的高阶速率常数。结合实验的准连续波性质,该模型揭示了每个分子在平衡时三重态的预期数量。我们的方法也适用于各种其他系统,例如单线态裂变活性分子阵列,并有可能为提高三重态捕获产率的设计和优化策略提供信息。

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