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通过主客体相互作用组装的芪-紫精电荷转移复合物的飞秒激发态动力学

Femtosecond excited state dynamics of a stilbene-viologen charge transfer complex assembled via host-guest interaction.

作者信息

Rusalov Mikhail V, Volchkov Valery V, Ivanov Vladimir L, Melnikov Mikhail Ya, Shelaev Ivan V, Gostev Fedor E, Nadtochenko Victor A, Vedernikov Artem I, Gromov Sergey P, Alfimov Michael V

机构信息

Chemistry Department, M. V. Lomonosov Moscow State University, Leninskie Gory 1-3, Moscow 119991, Russian Federation.

出版信息

Photochem Photobiol Sci. 2017 Dec 6;16(12):1801-1811. doi: 10.1039/c7pp00170c.

Abstract

The dynamics of the excited states of a supramolecular complex with a charge transfer between (E)-bis(18-crown-6)stilbene and 4,4'-(E)-ethene-1,2-diylbis[1-(2-ammonioethyl)pyridinium]tetraperchlorate was studied by means of femtosecond transient spectroscopy. It is found that the characteristic time of the conversion of the locally excited (LE) state into the charge transfer (CT) state is equal to 300 fs, whereas the characteristic time of the conversion of the CT state into the ground state is equal to 400 fs. Due to host-guest interaction involving hydrogen bonds, the complex possesses high thermodynamic stability. As a result of ultrafast photoinduced processes of the direct and back electron transfer, the complex does not fluoresce. Upon the interaction of the complex with alkaline-earth metal cations, "switch-on" of its fluorescence occurs.

摘要

通过飞秒瞬态光谱研究了超分子配合物(E)-双(18-冠-6)芪与4,4'-(E)-乙烯-1,2-二基双[1-(2-氨乙基)吡啶鎓]四高氯酸盐之间电荷转移激发态的动力学。发现局域激发(LE)态转化为电荷转移(CT)态的特征时间等于300飞秒,而CT态转化为基态的特征时间等于400飞秒。由于涉及氢键的主客体相互作用,该配合物具有高的热力学稳定性。由于直接和反向电子转移的超快光诱导过程,该配合物不发荧光。当该配合物与碱土金属阳离子相互作用时,其荧光发生“开启”。

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