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Theoretical investigation of electronic excitation energy transfer in bichromophoric assemblies

机译:双色性组装体中电子激发能转移的理论研究

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Electronic excitation energy transfer (EET) rates in rylene diimide dyads are calculated using second-order approximate coupled-cluster theory and time-dependent density functional theory. We investigate the dependence of the EET rates on the interchromophoric distance and the relative orientation and show that Forster theory works quantitatively only for donor-acceptor separations larger than roughly 5 nm. For smaller distances the EET rates are over- or underestimated by Forster theory depending on the respective orientation of the transition dipole moments of the chromophores. In addition to the direct transfer rates we consider bridge-mediated transfer originating from oligophenylene units placed between the chromophores. We find that the polarizability of the bridge significantly enhances the effective interaction. We compare our calculations to single molecule experiments on two types of dyads and find reasonable agreement between theory and experiment. (C) 2008 American Institute of Physics.
机译:使用二阶近似耦合簇理论和时变密度泛函理论计算在二甲苯二酰亚胺中的电子激发能传递(EET)速率。我们研究了EET速率对发色间距离和相对方向的依赖性,并表明Forster理论仅对大于约5 nm的供体-受体间隔定量起作用。对于较小的距离,根据生色团的跃迁偶极矩的相应方向,Forster理论会高估或低估EET速率。除了直接转移速率外,我们还考虑了源自生色团之间的低聚亚苯基单元的桥介导转移。我们发现,电桥的可极化性显着增强了有效的相互作用。我们将我们的计算结果与两种类型的二元组的单分子实验进行比较,并在理论和实验之间找到合理的一致性。 (C)2008美国物理研究所。

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