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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Interplay between nonadiabatic dynamics and frenkel exciton transfer in molecular aggregates: Formulation and application to a perylene bismide model
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Interplay between nonadiabatic dynamics and frenkel exciton transfer in molecular aggregates: Formulation and application to a perylene bismide model

机译:非绝热动力学与弗伦克尔激子在分子聚集体中的相互作用:and二酰亚胺模型的制定与应用

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摘要

The quantum dynamics of linear molecular aggregates in the presence of S_0 → S_1 and S_0 → S_2 transitions is investigated by putting emphasis on the interplay between local nonadiabatic S2 to S1 deactivation and Frenkel exciton transfer. The theoretical approach combines aspects of the linear vibronic coupling and Frenkel exciton models. Dynamics calculations are performed for the absorption spectrum and the electronic state populations using the multiconfiguration time-dependent Hartree approach. As an application, perylene bisimde J-type dimer and trimer aggregates are considered, including four tuning and one coupling mode per monomer. This leads to a dynamical model comprising up to 7 electronic states and 15 vibrational modes. The unknown nonadiabatic coupling strength is treated as a parameter that is chosen in accordance with available absorption spectra. This leaves some flexibility that can be limited by the clearly distinguishable population dynamics.
机译:通过重点研究局部非绝热S2到S1失活与Frenkel激子转移之间的相互作用,研究了存在S_0→S_1和S_0→S_2跃迁时线性分子聚集体的量子动力学。理论方法结合了线性振动耦合和Frenkel激子模型的各个方面。使用与时间相关的多组态Hartree方法对吸收光谱和电子态种群进行动力学计算。作为应用,应考虑per双酰亚胺J型二聚体和三聚体的聚集体,每个单体包括四种调节和一种偶联模式。这导致了一个动力学模型,该模型包含多达7个电子状态和15个振动模式。未知的非绝热耦合强度被视为根据可用吸收光谱选择的参数。这留下了一定的灵活性,这些灵活性可能会受到明显可区分的人口动态的限制。

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