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Singlet-triplet gaps in polyacenes: a delicate balance between dynamic and static correlations investigated by spin-flip methods

机译:聚乙烯中的单重态-三重态间隙:通过自旋翻转方法研究的动态和静态相关性之间的微妙平衡

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摘要

Over the last few years people have been interested in the process of singlet fission, owing to its relevance to solar cell technology. The energetics of singlet fission is intimately related to singlet-triplet (ST) gaps and energies of singlet excited states. However, accurate calculations of ST gaps in polyacenes are complicated due to near degeneracies in the pi orbitals, and therefore, have been quite challenging. The spin-flip equation-of-motion coupled-cluster (SF-EOM-CC) and its perturbative approximation have been shown to correctly treat situations involving electronic degeneracies and near degeneracies. In this work, we use various spin-flip methods to benchmark the ST gaps of small polyacenes and show that the error in the ST gaps with respect to the experiment is small and does not increase appreciably with the system size. The diradical and polyradical character of the polyacene ground states increase with the system size. However, for the small polyacenes the open-shell character of the ground state is still small enough to be treated using single reference methods.
机译:在过去的几年中,由于单线态裂变与太阳能电池技术的相关性,人们对单线态裂变的过程很感兴趣。单重态裂变的能量学与单重态-三重态(ST)的间隙和单重态激发态的能量密切相关。但是,由于π轨道的近乎简并性,精确计算聚乙炔中的ST间隙非常复杂,因此具有很大的挑战性。旋转翻转运动耦合簇(SF-EOM-CC)及其微扰近似已被证明可以正确处理涉及电子简并性和近简并性的情况。在这项工作中,我们使用各种自旋翻转方法对小型聚乙烯的ST间隙进行基准测试,结果表明,相对于实验而言,ST间隙的误差很小,并且不会随系统规模的增加而明显增加。多并苯基态的双自由基和多自由基特性随体系大小而增加。但是,对于小的聚乙烯,基态的开壳特性仍然足够小,可以使用单一参考方法进行处理。

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