首页> 外文期刊>Chemical Physics Letters >Photoinduced electron-transfer reactions and magnetic field effects on the decay rates of a photogenerated biradical from zinc porphyrin-viologen linked compounds in an ionic liquid
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Photoinduced electron-transfer reactions and magnetic field effects on the decay rates of a photogenerated biradical from zinc porphyrin-viologen linked compounds in an ionic liquid

机译:锌卟啉-紫精连接化合物在离子液体中的光诱导电子转移反应和磁场对光生双自由基衰变速率的影响

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摘要

Fluorescence and transient absorption spectra of zinc-porphyrin (ZnP)-viologen linked compounds with various methylene groups indicate that intramolecular electron-transfer from the singlet or triplet excited state of ZnP to viologen occurred and a biradical was generated in the ionic liquid (1-butyl-3-methylimidazolium tetrafluoroborate) at various temperatures (283-343 K). The decay rate constants of the biradical decreased in 0-0.2~0.5 T and became constant in 0.2~0.5-1 T. Unique effects of temperature and methylene chain length on electron-transfer and magnetic field effects were observed and are probably due to the properties of the ionic liquid as compared with benzonitrile.
机译:带有各种亚甲基的锌-卟啉(ZnP)-紫精连接化合物的荧光和瞬态吸收光谱表明,分子内电子从ZnP的单重态或三重态激发态转变为紫精,并在离子液体中产生了双自由基(1-在不同温度(283-343 K)下的3-甲基咪唑鎓四氟硼酸酯)。双自由基的衰变速率常数在0-0.2〜0.5 T范围内下降,在0.2〜0.5-1 T范围内趋于恒定。观察到温度和亚甲基链长对电子传递和磁场效应的独特影响,可能是由于与苯甲腈相比,离子液体的特性。

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