首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Chemically Induced Dynamic Electron Polarization Study on the Mechanism of Exchange Interaction in Radical Ion Pairs Generated by Photoinduced Electron Transfer Reactions
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Chemically Induced Dynamic Electron Polarization Study on the Mechanism of Exchange Interaction in Radical Ion Pairs Generated by Photoinduced Electron Transfer Reactions

机译:化学诱导的动态电子极化,研究光诱导的电子转移反应产生的自由基对中的交换相互作用的机理

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Photoinduced electron transfer reactions were studied by using the continuous wave time-resolved electron paramagnetic resonance and Fourier-transformed electron paramagnetic resonance spectroscopy in polar solvents. The chemically induced dynamic electron polarization was investigated in both singlet and triplet precursor intermolecular electron transfer systems. The signs of the exchange interaction, which are defined by the energy differences between the singlet and triplet radical ion pairs, depended on the free energy changes for the charge recombination processes. The results are interpreted in terms of the mechanism that the spin selective stabilization and destabilization are caused by the perturbation through the electronic coupling from the ground state and the locally excited triplet state of the donor-acceptor pair at the equilibrium nuclear coordinate. In the singlet precursor electron transfer systems, the positive exchange interaction resulted from the selective triplet stabilization in the radical ion pair, when the ion pair state crossed with the locally excited triplet state at the normal region. In the triplet precursor electron transfer systems, the negative exchange interaction resulted from the selective singlet stabilization when the ion pair state crossed with the singlet ground state at the normal region. When the free energy change is larger than about 1.8 eV, the positive exchange interaction resulted from the spin-selective destabilization in the singlet ion pair, since the level crossing occurs at the inverted region.
机译:通过在极性溶剂中使用连续波时间分辨电子顺磁共振和傅立叶变换电子顺磁共振光谱研究了光诱导的电子转移反应。在单重态和三重态前体分子间电子转移系统中都研究了化学诱导的动态电子极化。交换相互作用的符号由单线态和三线态自由基离子对之间的能量差定义,取决于电荷重组过程中的自由能变化。结果的解释依据是自旋选择性稳定化和去稳定化是由于在平衡核坐标下通过电子耦合从基态和供体-受体对的局部激发三重态引起的扰动引起的。在单重态前体电子转移系统中,当离子对状态与正常区域的局部激发三重态相交时,正离子交换相互作用是由自由基离子对中的选择性三重态稳定引起的。在三重态前驱体电子转移系统中,当离子对态在正常区域与单重态基态相交时,负性交换相互作用是由选择性单重态稳定引起的。当自由能变化大于约1.8 eV时,正离子交换相互作用是由于单线态离子对中的自旋选择去稳定而引起的,因为能级交叉发生在反向区域。

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