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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Magnetic Field Effect on a Radical Pair Reaction as a Probe of Microviscosity
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Magnetic Field Effect on a Radical Pair Reaction as a Probe of Microviscosity

机译:磁场对自由基对反应的微粘度影响

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The magnetic field effects (MFEs), caused by the Ag mechanism, on the photoinduced hydrogen abstraction reaction of benzopheneone with thiophenol were investigated in alcoholic solutions of varying viscosities (η = 0.55 to 59.2 cP) by a nanosecond laser flash photolysis technique. The escape yield of benzophenone ketyl radicals (Y) gradually decreased with increasing magnetic field strength (B) from 0 to 1.6 T. The relative yield observed at 1.6 T, R(l.6 T) = F(1.6 T)/Y(0 T), decreased with increasing η in the range of 0.55 cP ≤ η ≤ 5 cP, and then increased with increasing η in the range of 5 cP < η ≤ 55.3 cP. When η was higher than 55.3 cP, the R(1.6 -T) value became 1.0, and MFEs were completely quenched. The observed η dependence of the MFEs was analyzed by the stochastic Liouville equation (SLE), in which the effects of spin—orbit coupling by a heavy atom such as sulfur were taken into account. The observed MFEs were reproduced fairly well by the SLE analysis. The diffusion coefficients of the radicals obtained by the SLE were about three times smaller than those expected from the macroscopic solvent viscosities. One can probe the microviscosity in the vicinity of the radical pairs by observing MFEs on the present photochemical reaction system.
机译:通过纳秒激光闪光光解技术,研究了在不同粘度(η= 0.55至59.2 cP)的酒精溶液中,由银机理引起的磁场效应(MFE)对二苯甲酮与苯酚的光诱导氢提取反应的影响。随着磁场强度(B)从0 T增加到1.6 T,二苯甲酮酮基自由基的逸出量(Y)逐渐降低。在1.6 T下观察到的相对产率R(1.6 T)= F(1.6 T)/ Y( 0 T),随η的增加在0.55 cP≤η≤5 cP的范围内减小,然后随η的增加在5 cP <η≤55.3 cP的范围内增大。当η高于55.3 cP时,R(1.6 -T)值变为1.0,并且MFE被完全淬灭。通过随机的Liouville方程(SLE)分析了观察到的MFE的η依赖性,其中考虑了重原子(例如硫)的自旋-轨道耦合效应。通过SLE分析可以很好地再现观察到的MFE。 SLE获得的自由基的扩散系数比宏观溶剂粘度所预期的扩散系数小约三倍。可以通过观察当前光化学反应系统上的MFE来探测自由基对附近的微粘度。

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