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双连接锌卟啉-富勒烯偶联物中二聚体内激基复合物和电子转移的定量分析。

Quantitative analysis of intramolecular exciplex and electron transfer in a double-linked zinc porphyrin-fullerene dyad.

机构信息

Department of Chemistry and Bioengineering, Tampere University of Technology, P.O. Box 541, 33101, Tampere, Finland.

出版信息

J Phys Chem A. 2012 Oct 4;116(39):9653-61. doi: 10.1021/jp306953n. Epub 2012 Sep 19.

Abstract

Photoinduced charge transfer in a double-linked zinc porphyrin-fullerene dyad is studied. When the dyad is excited at the absorption band of the charge-transfer complex (780 nm), an intramolecular exciplex is formed, followed by the complete charge separated (CCS) state. By analyzing the results obtained from time-resolved transient absorption and emission decay measurements in a range of solvents with different polarities, we derived a dependence between the observable lifetimes and internal parameters controlling the reaction rate constants based on the semiquantum Marcus electron-transfer theory. The critical value of the solvent polarity was found to be ε(r) ≈ 6.5: in solvents with higher dielectric constants, the energy of the CCS state is lower than that of the exciplex and the relaxation takes place via the CCS state predominantly, whereas in solvents with lower polarities the energy of the CCS state is higher and the exciplex relaxes directly to the ground state. In solvents with moderate polarities the exciplex and the CCS state are in equilibrium and cannot be separated spectroscopically. The degree of the charge shift in the exciplex relative to that in the CCS state was estimated to be 0.55 ± 0.02. The electronic coupling matrix elements for the charge recombination process and for the direct relaxation of the exciplex to the ground state were found to be 0.012 ± 0.001 and 0.245 ± 0.022 eV, respectively.

摘要

研究了双链接锌卟啉-富勒烯偶联物中的光诱导电荷转移。当偶联物在电荷转移复合物的吸收带(780nm)处被激发时,形成分子内激基复合物,随后是完全的电荷分离(CCS)态。通过在不同极性的一系列溶剂中进行时间分辨瞬态吸收和发射衰减测量的结果分析,我们基于半量子马库斯电子转移理论,得出了可观察寿命与控制反应速率常数的内部参数之间的依赖性。发现溶剂极性的临界值为 ε(r) ≈ 6.5:在介电常数较高的溶剂中,CCS 态的能量低于激基复合物的能量,松弛主要通过 CCS 态发生,而在极性较低的溶剂中,CCS 态的能量较高,激基复合物直接松弛到基态。在中等极性的溶剂中,激基复合物和 CCS 态处于平衡状态,无法通过光谱学分离。激基复合物中电荷转移相对于 CCS 态的程度估计为 0.55 ± 0.02。电荷复合过程和激基复合物直接弛豫到基态的电子耦合矩阵元分别为 0.012 ± 0.001 和 0.245 ± 0.022eV。

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