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首页> 外文期刊>The Journal of Chemical Physics >Kinetics and mechanism of bimolecular electron transfer reaction in quinone-amine systems in micellar solution
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Kinetics and mechanism of bimolecular electron transfer reaction in quinone-amine systems in micellar solution

机译:胶束溶液中醌胺体系中双分子电子转移反应的动力学和机理

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Photoinduced electron transfer (ET) reactions between anthraquinone derivatives and aromatic amines have been investigated in sodium dodecyl sulphate (SDS) micellar solutions. Significant static quenching of the quinone fluorescence due to high amine concentration in the micellar phase has been observed in steady-state measurements. The bimolecular rate constants for the dynamic quenching in the present systems k(q)(TR), as estimated from the time-resolved measurements, have been correlated with the free energy changes DeltaG(0) for the ET reactions. Interestingly it is seen that the k(q)(TR) vs DeltaG(0) plot displays an inversion behavior with maximum k(q)(TR) at around 0.7 eV, a trend similar to that predicted in Marcus ET theory. Like the present results, Marcus inversion in the k(q)(TR) values was also observed earlier in coumarin-amine systems in SDS and TX-100 micellar solutions, with maximum k(q)(TR) at around the same exergonicity. These results thus suggest that Marcus inversion in bimolecular ET reaction is a general phenomenon in micellar media. Present observations have been rationalized on the basis of the two-dimensional ET (2DET) theory, which seems to be more suitable for micellar ET reactions than the conventional ET theory. For the quinone-amine systems, it is interestingly seen that k(q)(TR) vs DeltaG(0) plot is somewhat wider in comparison to that of the coumarin-amine systems, even though the maxima in the k(q)(TR) vs DeltaG(0) plots appear at almost similar exergonicity for both the acceptor-donor systems. These observations have been rationalized on the basis of the differences in the reaction windows along the solvation axis, as envisaged within the framework of the 2DET theory, and arise due to the differences in the locations of the quinones and coumarin dyes in the micellar phase. (C) 2005 American Institute of Physics.
机译:在十二烷基硫酸钠(SDS)胶束溶液中研究了蒽醌衍生物与芳香胺之间的光诱导电子转移(ET)反应。在稳态测量中已观察到由于胶束相中胺浓度高而引起的醌荧光的显着静态猝灭。从时间分辨的测量值估计,本系统中动态猝灭的双分子速率常数k(q)(TR)已与ET反应的自由能变化DeltaG(0)相关。有趣的是,可以看到k(q)(TR)与DeltaG(0)的图显示了一个反转行为,最大k(q)(TR)在0.7 eV左右,这一趋势类似于Marcus ET理论中预测的趋势。像目前的结果一样,在SDS和TX-100胶束溶液中的香豆素-胺系统中也较早地观察到了k(q)(TR)值的Marcus倒置,在相同的激发强度下最大k(q)(TR)。因此,这些结果表明,双分子ET反​​应中的Marcus倒置是胶束介质中的普遍现象。目前的观察已基于二维ET(2DET)理论进行了合理化,该理论似乎比常规ET理论更适合于胶束ET反应。对于醌-胺系统,有趣的是,即使k(q)(最大值)为k(q)(TR)vs DeltaG(0)的曲线也比香豆素-胺系统的曲线宽一些。对于两个受体-供体系统,TR)与DeltaG(0)的图表现出几乎相同的强度。这些观察已经根据2DET理论框架中设想的沿着溶剂化轴的反应窗口差异进行了合理化,并且由于胶束相中醌和香豆素染料的位置差异而产生。 (C)2005美国物理研究所。

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