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Excited-State Dynamics of Tetraphenylethylene: Ultrafast Stokes Shift, Isomerization, and Charge Separation

机译:四苯乙烯的激发态动力学:超快斯托克斯位移,异构化和电荷分离

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摘要

Femtosecond pump-probe spectroscopy is used to explore the excited-state dynamics of TPE in polar and nonpolar solvents. Four excited states are shown to play an important role: the vertically excited S1 state, the Franck-Condon relaxed S1 state, a twisted charge-resonance state (in the literature often referred to as biradical), and a charge-separated state. The subpicosecond dynamics are dominated by a very large Stokes shift, which is primarily due to ultrafast elongation of the ethylenic C-C bond, and by wave packet motion of the phenyl-ring bending modes. On picosecond time scales, isomerization dynamics and charge separation by symmetry breaking occur. The latter process is made possible by an avoided crossing between the singly and doubly excited states of TPE, leading to a dramatic enhancement of the polarizability. The electron transfer across the C-C bond follows an adiabatic reaction path on the lower potential energy surface. In nonpolar solvents, an equilibrium is established with a symmetric charge resonance state, by thermally activated recrossing to the upper potential surface. In polar solvents this process is suppressed by solvent stabilization of the dipolar, zwitterionic form of TPE.
机译:飞秒泵浦探针光谱法用于研究TPE在极性和非极性溶剂中的激发态动力学。四个激发态显示出重要的作用:垂直激发S1状态,Franck-Condon弛豫S1状态,扭曲的电荷共振状态(在文献中通常称为双自由基)和电荷分离状态。亚皮秒级的动力学主要由非常大的斯托克斯位移控制,这主要是由于烯键式C-C键的超快速伸长以及苯环弯曲模式的波包运动。在皮秒的时间尺度上,会发生异构化动力学和对称性破坏造成的电荷分离。通过避免TPE的单激发态和双激发态之间的交叉,使得后一种过程成为可能,从而大大提高了极化率。跨C-C键的电子转移遵循低势能表面上的绝热反应路径。在非极性溶剂中,通过热活化再交联到上位势表面,建立具有对称电荷共振状态的平衡。在极性溶剂中,此过程可通过TPE的偶极两性离子形式的溶剂稳定来抑制。

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