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The Doubly Excited State in Singlet Fission

机译:单线态的双激发态裂变

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In recent years, a variety of studies have investigated in great depth the details of singlet fission mechanisms in terms of electronic energies and couplings. The nature and properties of the triplet-pair intermediate state or the role of charge separated configurations (CT states) have been extensively explored with the help of theoretical models, ab initio calculations, and experimental characterization. On the other hand, much less is known about the involvement of the localized double electron excitation, that is the D state. In organic conjugated molecules, the D state can be typically described as the HOMO-to-LUMO promotion of two electrons, which makes it inactive to photoabsorption (dark state). In the present study, we tackle the possible roles of the D state by means of electronic structure calculations and the simulation of singlet fission dynamics. Our results suggest that, indeed, the D state can have a significant impact on singlet fission. On one hand, if it lies energetically below the optical exciton it is able to drive the system to singlet fission through direct coupling or via a CT-mediated path. The D state can also act as a mediator in the formation of the triplet-pair state from initial photoactivation. These results should motivate researchers in the field to include this state in their analysis, and help to clarify electronic mechanisms in singlet fission materials.
机译:近年来,各种各样的研究深入调查的细节单线态分裂机制的电子能量和耦合。triplet-pair中间状态或电荷分离的角色配置(CT州)被广泛的探索理论模型的帮助下,从头开始计算和实验表征。另一方面,知之更少参与本地化的双电子激发,D状态。共轭分子,D状态通常描述为HOMO-to-LUMO晋升两个电子,使它失效光吸收(黑暗状态)。研究中,我们解决的可能角色国家通过电子结构单线态的计算和仿真裂变动力学。事实上,D状态能产生重大影响在单线态裂变。大力在光激子能够驱动系统单线态裂变通过直接耦合或通过CT-mediated路径。triplet-pair状态的形成最初的光活化。激励包括该领域的研究人员在他们的分析,有助于澄清电子机制单线态裂变材料。

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