首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Effect of magnetic fields on the triplet state lifetime in photosynthetic reaction centers: Evidence for thermal repopulation of the initial radical pair
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Effect of magnetic fields on the triplet state lifetime in photosynthetic reaction centers: Evidence for thermal repopulation of the initial radical pair

机译:磁场对光合反应中心三重态寿命的影响:初始自由基对热重聚的证据

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摘要

The lifetime of the molecular triplet state formed by recombination of the radical ion pair in quinonedepleted bacterial photosynthetic reaction centers is found to depend on applied magnetic field strength. It is suggested that this magnetic field effect results from thermally activated repopulation of the same radical ion pair that generates the triplet. Consistent with this hypothesis, the magnetic field effect on the triplet lifetime disappears at low temperature where the triplet state decays exclusively by ordinary intersystem crossing. This activated pathway for the decay of the triplet state can explain the strong temperature dependence of the triplet decay rate. A detailed theoretical treatment of the problem within a set of physically reasonable assumptions relates the observed temperature dependence of the triplet decay rate to the energy gap between the radical ion pair intermediate and the triplet state. This energy gap is estimated to be about 950 cm-1 (0.12 eV). Combined with an estimate of the energy of the donor excited state, we obtain an energy gap between the excited singlet state of the donor and the radical ion pair of 2,250 cm-1 (0.28 eV).
机译:发现在贫醌的细菌光合反应中心中,自由基离子对的重组形成的分子三重态的寿命取决于所施加的磁场强度。建议该磁场效应是由产生三重态的相同自由基离子对的热活化再填充引起的。与此假设相一致,磁场对三重态寿命的影响在低温下消失,在低温下,三重态仅通过普通的系统间穿越而衰减。三重态衰变的激活途径可以解释三重态衰变速率对温度的强烈依赖性。在一组物理上合理的假设范围内对该问题进行的详细理论处理将观察到的三重态衰减速率的温度依赖性与自由基离子对中间体和三重态之间的能隙相关。该能隙估计约为950 cm -1 (0.12 eV)。结合对供体激发态能量的估计,我们得到了供体的激发单重态与自由基离子对之间的能隙为2,250 cm -1 (0.28 eV)。

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