Taffet Elliot J, Scholes Gregory D
Department of Chemistry , Princeton University , Princeton , New Jersey 08544 , United States.
J Phys Chem B. 2018 Jun 7;122(22):5835-5844. doi: 10.1021/acs.jpcb.8b02504. Epub 2018 May 24.
The nature of intramolecular charge transfer (ICT) and the mechanism of intramolecular singlet fission (SF) in peridinin remain open research questions. Obtaining an understanding of the population evolution from the bright state to dark state following a photoinduced electronic transition is critical. Unambiguously describing this evolution in peridinin, and light-harvesting carotenoids in general, has proven elusive experimentally and computationally. To offer a balanced description of the bright- and dark-state electronic structures, we here apply ab initio multireference perturbation theory quantum chemistry-the density matrix renormalization group self-consistent field and complete-active-space self-consistent field with second-order N-electron valence perturbation theory. At traditional bright- (S) and dark-state (S) optimized geometries, we find that an additional correlated triplet pair state and ICT state are derived from the canonical polyene B (S) and 3A (S) dark singlet excited states, respectively. Whereas the S state's physical properties are insensitive to peridinin's allene-tail donor and lactone ring acceptor functionalization, the S state exhibits a markedly enhanced oscillator strength and highest occupied molecular orbital-lowest unoccupied molecular orbital transition density. These changes suggest that the ICT character stems from mixing between the bright S and putatively dark S.
在多甲藻素中,分子内电荷转移(ICT)的本质以及分子内单线态裂变(SF)的机制仍是有待研究的问题。理解光诱导电子跃迁后从亮态到暗态的布居演化至关重要。明确描述多甲藻素以及一般的光捕获类胡萝卜素中的这种演化,在实验和计算方面都已证明颇具难度。为了平衡地描述亮态和暗态的电子结构,我们在此应用从头算多参考微扰理论量子化学——密度矩阵重整化群自洽场以及带有二阶N电子价微扰理论的完全活性空间自洽场。在传统的亮态(S)和暗态(S)优化几何结构下,我们发现一个额外的关联三重态对态和ICT态分别源自正则多烯B(S)和3A(S)暗单线态激发态。虽然S态的物理性质对多甲藻素的丙二烯尾供体和内酯环受体官能化不敏感,但S态表现出明显增强的振子强度和最高占据分子轨道 - 最低未占据分子轨道跃迁密度。这些变化表明ICT特征源于亮态S和假定的暗态S之间的混合。