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Photoinduced intramolecular electron transfer and charge separation in zinc phthalocyanine-viologen linked system

机译:光突出的分子内电子转移和电荷分离在锌酞菁 - Viologen连接系统中

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摘要

Photoinduced electron transfer and charge separation processes in zinc phthalocya-nine-viologen linked system have been studied and the distance effect of donor/acceptor on electron transfer reaction is discussed. It is indicated that the fluorescence from the zinc phthalocyanine moiety is appreciably quenched and the life-time of singlet excited state is reduced by the pendant viologen. Time-resolved transient absorption spectra measurements show that intramolecular quenching of the triplet state of zinc phthalocyanine by the attached viologen results in charge separation giving reduced viologen radical alive for a rather long period with hundred microsecond duration. The effect of the carbon chain length on the electron transfer rate constant and charge separation efficiency suggests that upon excitation, the zinc phthalocyanine and viologen groups tend to take closer conformation with the increase of the carbon chain examined. The rate constant for the intramolecular electron transfer ket with n = 3
机译:已经研究了光诱导的电子转移和电荷分离过程,并讨论了供体/受体对电子转移反应的距离效应。结果表明,来自锌酞菁部分的荧光显着淬火,并且垂侧viologen减少了单线素激发态的寿命。时间分离的瞬态吸收光谱测量表明,通过附着的Viologen的锌酞菁的三重素淬火的分子内猝灭导致电荷分离,使Viologen自由基活着,相当长的时间以100微秒的持续时间。碳链长度对电子传递速率恒定和电荷分离效率的影响表明,在激发时,锌酞菁和Viololgen组往往随着所检查的碳链的增加而采取更紧密的构象。具有n = 3的分子内电子转移ket的速率常数

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