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Intermolecular Singlet and Triplet Exciton TransferIntegrals from Many-Body Green’s Functions Theory

机译:分子间单重态和三重态激子转移多体格林函数论的积分

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摘要

A general approach to determine orientation and distance-dependent effective intermolecular exciton transfer integrals from many-body Green’s functions theory is presented. On the basis of the GW approximation and the Bethe–Salpeter equation (BSE), a projection technique is employed to obtain the excitonic coupling by forming the expectation value of a supramolecular BSE Hamiltonian with electron–hole wave functions for excitations localized on two separated chromophores. Within this approach, accounting for the effects of coupling mediated by intermolecular charge transfer (CT) excitations is possible via perturbation theory or a reduction technique. Application to model configurations of pyrene dimers shows an accurate description of short-range exchange and long-range Coulomb interactions for the coupling of singlet and triplet excitons. Computational parameters, such as the choice of the exchange-correlation functional in the density-functional theory (DFT) calculations that underly the GW-BSE steps and the convergence with the number of included CT excitations, are scrutinized. Finally, an optimal strategy is derived for simulations of full large-scale morphologies by benchmarking variousapproximations using pairs of dicyanovinyl end-capped oligothiophenes(DCV5T), which are used as donor material in state-of-the-art organicsolar cells.
机译:提出了一种从多体格林函数理论确定取向和距离相关的有效分子间激子转移积分的通用方法。在GW近似和Bethe–Salpeter方程(BSE)的基础上,采用投影技术通过形成超分子BSE哈密顿量的期望值来获得激子耦合,哈密顿量具有电子-空穴波函数,用于两个分离的生色团上的激发。在这种方法中,可以通过扰动理论或归约技术来考虑分子间电荷转移(CT)激发介导的耦合效应。 to二聚体模型配置的应用显示了用于单重态和三重态激子耦合的短程交换和长程库仑相互作用的准确描述。仔细研究了计算参数,例如密度函数理论(DFT)计算中交换相关函数的选择,该函数是GW-BSE步骤的基础,并且与包含的CT激发数一致。最后,通过对各种基准进行基准测试,得出了用于仿真大型尺度形态的最佳策略使用双氰基乙烯基封端的低聚噻吩进行近似(DCV5T),用作最先进的有机供体材料太阳能电池。

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