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叶绿素 a 二聚体中的光诱导分子内和分子间能量转移。

Photoinduced Intra- and Intermolecular Energy Transfer in Chlorophyll a Dimer.

机构信息

Division of Materials Science, Nanyang Technological University , Singapore 639798, Singapore.

Universidad Nacional de Quilmes/CONICET , Roque Saenz Peña 352, B1876BXD Bernal, Argentina.

出版信息

J Phys Chem B. 2017 Jun 1;121(21):5331-5339. doi: 10.1021/acs.jpcb.7b02021. Epub 2017 May 22.

Abstract

Applying nonadiabatic excited-state molecular dynamics, we investigate excitation energy transfer and exciton localization dynamics in a chlorophyll a (Chla) dimer system at the interface of two monomers of light-harvesting complex II trimer. After its optical excitation at the red edge of the Soret (B) band, the Chla dimer experiences an ultrafast intra- and intermolecular nonradiative relaxation process to the lowest band (Q). The energy relaxation is found to run faster in the Chla dimer than in the Chla monomer. Once the molecular system reaches the lowest Q band composed of two lowest excited states S and S, the concluding relaxation step involves the S → S population transfer, resulting in a relatively slower relaxation rate. The strength of thermal fluctuations exceeds intraband electronic coupling between the states belonging to a certain band (B, Q, and Q), producing localized states on individual chromophores. Therefore, time evolution of spatial electronic localization during internal conversion reveals transient trapping on one of the Chla monomers participating in the events of intermonomeric energy exchange. In the phase space domains where electronic states are strongly coupled, these states become nearly degenerate promoting Frenkel-exciton-like delocalization and interchromophore energy transfer. As energy relaxation occurs, redistribution of the transition density on two Chla monomers leads to nearly equal distribution of the exciton among the molecules. For a single Chla, our analysis of excitonic dynamics reveals wave function amplitude transfer from nitrogen and outer carbon atoms to inner carbon atoms during nonradiative relaxation.

摘要

应用非绝热激发态分子动力学,我们研究了在两个光捕获复合物 II 三聚体单体界面处的叶绿素 a (Chla) 二聚体系统中的激发能转移和激子局域化动力学。在其在 Soret (B) 带的红色边缘处被光学激发后,Chla 二聚体经历了超快的分子内和分子间非辐射弛豫过程到最低能带 (Q)。发现能量弛豫在 Chla 二聚体中比在 Chla 单体中更快。一旦分子系统达到由两个最低激发态 S 和 S 组成的最低 Q 带,最后的弛豫步骤涉及 S → S 的种群转移,导致相对较慢的弛豫率。热涨落的强度超过了属于特定带 (B、Q 和 Q) 的状态之间的带内电子耦合,在单个发色团上产生局域态。因此,在内部转换期间空间电子局域化的时间演化揭示了参与分子间能量交换事件的一个 Chla 单体上的瞬态捕获。在电子态强烈耦合的相空间域中,这些态变得几乎简并,促进弗伦克尔激子样离域和发色团间能量转移。随着能量弛豫的发生,两个 Chla 单体上的跃迁密度的再分配导致激子在分子间几乎均匀分布。对于单个 Chla,我们对激子动力学的分析揭示了在非辐射弛豫过程中,从氮和外围碳原子到内碳原子的波函数振幅转移。

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