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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Ultrafast excited state dynamics of the perylene radical cation generated upon bimolecular photoinduced electron transfer reaction
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Ultrafast excited state dynamics of the perylene radical cation generated upon bimolecular photoinduced electron transfer reaction

机译:双分子光致电子转移反应产生的per自由基阳离子的超快激发态动力学

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The ultrafast ground state recovery (GSR) dynamics of the radical cation of perylene, Pe(.+), generated upon bimolecular photoinduced electron transfer in acetonitrile, has been investigated using pump-pump-probe spectroscopy. With 1,4-dicyanobenzene as electron acceptor, the free ion yield is substantial and the GSR dynamics of Pe(.+) was found to depend on the time delay between the first and second pump pulses, Delta t(12), i.e., on the "age" of the ion. At short Delta t(12), the GSR dynamics is biphasic, and at Delta t(12) larger than about 500 ps, it becomes exponential with a time constant around 3 ps. With trans-1,2-dicyanoethylene as acceptor, the free ion yield is essentially zero and the GSR dynamics of Pe(.+) remains biphasic independently of Delta t(12). The change of dynamics observed with 1,4-dicyanobenzene is ascribed to the transition from paired to free solvated ion, because in the pair, the excited ion has an additional decay channel to the ground state, i.e., charge recombination followed by charge separation. The rate constants deduced from the analysis of these GSR dynamics are all fully consistent with this hypothesis.
机译:已使用泵浦-泵浦光谱研究了双分子光诱导电子在乙腈中转移产生的per的自由基阳离子Pe(。+)的超快基态恢复(GSR)动力学。以1,4-二氰基苯作为电子受体,自由离子的产率很高,并且发现Pe(。+)的GSR动力学取决于第一泵脉冲和第二泵脉冲之间的时间延迟Delta t(12),即在离子的“年龄”上。在短的Delta t(12)处,GSR动力学是双相的,在Delta t(12)大于约500 ps时,它的时间常数约为3 ps时呈指数形式。以反式1,2-二氰基乙烯为受体,自由离子收率基本为零,并且Pe(。+)的GSR动力学保持双相独立于Delta t(12)。用1,4-二氰基苯观察到的动力学变化归因于从成对的到游离的溶剂化离子的转变,因为在成对的情况下,激发的离子具有到基态的另外的衰变通道,即,电荷复合,然后进行电荷分离。通过对这些GSR动态的分析得出的速率常数都完全符合这一假设。

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