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共价连接的酞菁-聚对苯撑乙烯基-C60 体系中的电荷分离。溶剂极性的影响。

Charge separation in a covalently-linked phthalocyanine-oligo(p-phenylenevinylene)-C60 system. Influence of the solvent polarity.

机构信息

Departamento de Química Orgánica, Facultad de Ciencias, Universidad Autónoma de Madrid, Madrid, Spain.

出版信息

J Inorg Biochem. 2012 Mar;108:216-24. doi: 10.1016/j.jinorgbio.2011.11.011. Epub 2011 Nov 22.

Abstract

A photo- and redoxactive system ZnPc-oPPV-C(60)2, in which the photoexcited state electron donor - zinc phthalocyanine - and the ground state electron acceptor - C(60) - are connected by a oligo(p-phenylenevinylene) (oPPV) spacer, has been synthesized in a multi-step synthesis by means of two consecutive Wadsworth-Horner-Emmons and a dipolar 1,3-cycloaddition reactions as key steps. The simpler system ZnPc-C(60)1 has also been prepared as a reference model for photophysical studies. In this regards, the photophysical investigations by means of fluorescence, flash photolysis, and transient-absorption spectroscopy have manifested a clear dependence between charge transfer kinetics and spatial arrangement. In both systems, intramolecular charge separation evolves from the photoexcited ZnPc and yields the ZnPc(·+)/C(60)(·-) radical ion pairs. Interestingly, the ZnPc(·+)/C(60)(·-) radical ion pair lifetimes and quantum yields are strongly impacted by the solvent polarity and the distance. To this end, maximum radical ion pair lifetimes of 2900 and 5530 ps were found in anisol for 1 and 2, respectively.

摘要

一个光和氧化还原活性体系 ZnPc-oPPV-C(60)2,其中光激发态电子给体-锌酞菁和基态电子受体-C(60)-通过一个寡聚(p-亚苯基乙烯)(oPPV)间隔物连接,已经通过两步连续的 Wadsworth-Horner-Emmons 和一个偶极 1,3-环加成反应作为关键步骤,在多步合成中合成。作为光物理研究的参考模型,也制备了更简单的体系 ZnPc-C(60)1。在这方面,通过荧光、闪光光解和瞬态吸收光谱进行的光物理研究表明,电荷转移动力学和空间排列之间存在明显的依赖性。在这两个体系中,分子内电荷分离从光激发的 ZnPc 中演变而来,并产生 ZnPc(·+)/C(60)(·-)自由基离子对。有趣的是,ZnPc(·+)/C(60)(·-)自由基离子对的寿命和量子产率强烈受到溶剂极性和距离的影响。为此,在茴香醚中,分别发现 1 和 2 的自由基离子对寿命最大值为 2900 和 5530 ps。

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