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超快非福斯特分子内供体-受体激发能量转移

Ultrafast Non-Förster Intramolecular Donor-Acceptor Excitation Energy Transfer.

作者信息

Athanasopoulos Stavros, Alfonso Hernandez Laura, Beljonne David, Fernandez-Alberti Sebastian, Tretiak Sergei

机构信息

Departamento de Física, Universidad Carlos III de Madrid , Avenida Universidad 30, 28911 Leganés, Madrid, Spain.

Experimental Physics II, University of Bayreuth , Bayreuth 95440, Germany.

出版信息

J Phys Chem Lett. 2017 Apr 6;8(7):1688-1694. doi: 10.1021/acs.jpclett.7b00259. Epub 2017 Mar 31.

Abstract

Ultrafast intramolecular electronic energy transfer in a conjugated donor-acceptor system is simulated using nonadiabatic excited-state molecular dynamics. After initial site-selective photoexcitation of the donor, transition density localization is monitored throughout the S → S internal conversion process, revealing an efficient unidirectional donor → acceptor energy-transfer process. Detailed analysis of the excited-state trajectories uncovers several salient features of the energy-transfer dynamics. While a weak temperature dependence is observed during the entire electronic energy relaxation, an ultrafast initially temperature-independent process allows the molecular system to approach the S-S potential energy crossing seam within the first ten femtoseconds. Efficient energy transfer occurs in the absence of spectral overlap between the donor and acceptor units and is assisted by a transient delocalization phenomenon of the excited-state wave function acquiring Frenkel-exciton character at the moment of quantum transition.

摘要

利用非绝热激发态分子动力学模拟了共轭供体-受体系统中的超快分子内电子能量转移。在对供体进行初始位点选择性光激发后,在整个S→S内转换过程中监测跃迁密度定位,揭示了一个高效的单向供体→受体能量转移过程。对激发态势轨迹的详细分析揭示了能量转移动力学的几个显著特征。虽然在整个电子能量弛豫过程中观察到较弱的温度依赖性,但一个超快的初始与温度无关的过程使分子系统在最初的十飞秒内接近S-S势能交叉缝。在供体和受体单元之间不存在光谱重叠的情况下发生了高效的能量转移,并且在量子跃迁时刻激发态波函数获得弗伦克尔-激子特征的瞬态离域现象的辅助下进行。

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