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Exact wave packet dynamics of singlet fission in unsubstituted and substituted polyene chains within long-range interacting models

机译:远距离相互作用模型中未取代和取代的多烯链中单线态裂变的精确波包动力学

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摘要

Singlet fission (SF) is a potential pathway for significant enhancement of efficiency in organic solar cells (OSC). In this paper, we study singlet fission in a pair of polyene molecules in two different stacking arrangements employing exact many-body wave packet dynamics. In the noninteracting model, the SF yield is absent. The individual molecules are treated within Hubbard and Pariser-Parr-Pople (PPP) models and the interaction between them involves transfer terms, intersite electron repulsions, and site-charge-bond-charge repulsion terms. Initial wave packet is constructed from excited singlet state of one molecule and ground state of the other. Time development of this wave packet under the influence of intermolecular interactions is followed within the Schrdinger picture by an efficient predictor-corrector scheme. In unsubstituted Hubbard and PPP chains, 2(1) A excited singlet state leads to significant SF yield while the 1(1) B state gives negligible fission yield. On substitution by donor-acceptor groups of moderate strength, the lowest excited state will have sufficient 2(1) A character and hence results in significant SF yield. Because of rapid internal conversion, the nature of the lowest excited singlet will determine the SF contribution to OSC efficiency. Furthermore, we find the fission yield depends considerably on the stacking arrangement of the polyene molecules.
机译:单线态裂变(SF)是潜在提高有机太阳能电池(OSC)效率的潜在途径。在本文中,我们利用精确的多体波包动力学研究了两个不同堆叠排列中一对多烯分子的单重态裂变。在非交互模型中,SF产量不存在。单个分子在Hubbard和Pariser-Parr-Pople(PPP)模型中进行处理,它们之间的相互作用涉及转移项,位间电子排斥和位电荷-键电荷排斥项。初始波包由一个分子的激发单重态和另一分子的基态构成。在分子间相互作用的影响下,这种波包的时间发展在薛定inger图像中遵循了有效的预测器-校正器方案。在未取代的Hubbard和PPP链中,激发的单重态2(1)导致显着的SF产率,而1(1)B态给出的裂变产率可忽略不计。在用中等强度的供体-受体基团取代时,最低激发态将具有足够的2(1)A特性,因此会导致可观的SF收率。由于快速的内部转换,最低激发单线态的性质将决定SF对OSC效率的贡献。此外,我们发现裂变产率在很大程度上取决于多烯分子的堆叠排列。

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