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重新探讨锌(II)卟啉-紫精复合物的超快电子转移动力学:S2 与 S1 反应及过剩激发能的存活

Ultrafast electron transfer dynamics of a Zn(II)porphyrin-viologen complex revisited: S2 vs S1 reactions and survival of excess excitation energy.

机构信息

Chemical Physics Group, Department of Photochemistry and Molecular Science, Uppsala University, Box 523, SE-751 20 Uppsala, Sweden.

出版信息

J Phys Chem B. 2010 Nov 18;114(45):14329-38. doi: 10.1021/jp911686z. Epub 2010 Mar 1.

Abstract

The photoinduced electron transfer reactions in a self-assembled 1:1 complex of zinc(II)tetrasulphonatophenylporphyrin (ZnTPPS(4-)) and methylviologen (MV(2+)) in aqueous solution were investigated with transient absorption spectroscopy. ZnTPPS(4-) was excited either in the Soret or one of the two Q-bands, corresponding to excitation into the S(2) and S(1) states, respectively. The resulting electron transfer to MV(2+) occurred, surprisingly, with the same time constant of τ(FET) = 180 fs from both electronic states. The subsequent back electron transfer was rapid, and the kinetics was independent of the initially excited state (τ(BET) = 700 fs). However, ground state reactants in a set of vibrationally excited states were observed. The amount of vibrationally excited ground states detected increased with increasing energy of the initial excited state, showing that excess excitation energy survived a two-step electron transfer reaction in solution. Differences in the ZnTPSS(•3-)/MV(•+) spectra suggest that the forward electron transfer from the S(2) state at least partially produces an electronically excited charge transfer state, which effectively suppresses the influence of the inverted regime. Other possible reasons for the similar electron transfer rates for the different excited states are also discussed.

摘要

在水溶液中,锌(II)四磺基苯基卟啉(ZnTPPS(4-))和甲紫精(MV(2+))的自组装 1:1 配合物的光诱导电子转移反应通过瞬态吸收光谱进行了研究。ZnTPPS(4-) 分别在 Soret 带或两个 Q 带之一被激发,分别对应于 S(2)和 S(1)态的激发。令人惊讶的是,来自这两个电子态的电子转移到 MV(2+)发生的时间常数 τ(FET) = 180 fs。随后的反向电子转移很快,动力学与初始激发态无关(τ(BET) = 700 fs)。然而,观察到一组振动激发的基态反应物。检测到的振动激发基态的数量随初始激发态能量的增加而增加,表明过量的激发能在溶液中的两步电子转移反应中幸存下来。ZnTPSS(•3-)/MV(•+)光谱的差异表明,从 S(2)态的正向电子转移至少部分产生了一个电子激发的电荷转移态,这有效地抑制了反转状态的影响。还讨论了不同激发态电子转移速率相似的其他可能原因。

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