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首页> 外文期刊>The Journal of Chemical Physics >On the low magnetic field effect in radical pair reactions
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On the low magnetic field effect in radical pair reactions

机译:基于自由基对反应中的低磁场效应

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Radical pair recombination reactions are known to be sensitive to the application of both low and high magnetic fields. The application of a weak magnetic field reduces the singlet yield of a singlet-born radical pair, whereas the application of a strong magnetic field increases the singlet yield. The high field effect arises from energy conservation: when the magnetic field is stronger than the sum of the hyperfine fields in the two radicals, S - T-+/- transitions become energetically forbidden, thereby reducing the number of pathways for singlet to triplet interconversion. The low field effect arises from symmetry breaking: the application of a weak magnetic field lifts degeneracies among the zero field eigenstates and increases the number of pathways for singlet to triplet interconversion. However, the details of this effect are more subtle and have not previously been properly explained. Here we present a complete analysis of the low field effect in a radical pair containing a single proton and in a radical pair in which one of the radicals contains a large number of hyperfine-coupled nuclear spins. We find that the new transitions that occur when the field is switched on are between S and T-0 in both cases, and not between S and T-+/- as has previously been claimed. We then illustrate this result by using it in conjunction with semiclassical spin dynamics simulations to account for the observation of a biphasic-triphasic-biphasic transition with increasing magnetic field strength in the magnetic field effect on the time-dependent survival probability of a photoexcited carotenoid-porphyrin-fullerene radical pair. Published by AIP Publishing.
机译:已知自由基对重组反应对低磁场和高磁场的应用敏感。弱磁场的施加减少了单线自由基对的单次产量,而强磁场的施加增加了单线产率。高场效应产生节能:当磁场比两种激进的超细田的总和强,S - & T - + / - 过渡变得高大禁止,从而减少了单态的途径数量到三联互连。低场效应产生对称性断裂:弱磁场施加零场特征中的退化性并增加了三重态互连的单线态的途径数。然而,这种效果的细节更加微妙,并且以前没有得到适当的解释。在这里,我们对包含单个质子和自由基对的基团对中的低场效果完全分析,其中一个基团含有大量的高血耦合核旋转。我们发现,当字段在两种情况下,在S和T-0之间接通时,在S和T-+ / - 先前已被证明的新的转换,则在S和T-+ / - 所示的新转换。然后,我们通过结合半透明的自旋动力学模拟来说明这种结果,以考虑观察与磁场强度的磁场强度增加对运动型类胡萝卜素的时间依赖性存活概率 - 的磁场强度的观察 - 平衡 - 双相转变卟啉 - 富勒烯自由基对。通过AIP发布发布。

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