Volgograd State University, University Avenue 100, Volgograd 400062, Russia.
J Phys Chem A. 2012 Feb 2;116(4):1159-67. doi: 10.1021/jp210988k. Epub 2012 Jan 20.
Intramolecular charge separation from the second singlet excited state of directly linked Zn-porphyrin-imide dyads and following charge recombination into the first singlet excited state has been investigated in the framework of a model involving three electronic states (the first and the second singlet excited and charge separated states) as well as their vibrational sublevels. Kinetics of the transitions between these states are described in terms of the stochastic point-transition approach. The influence of the model parameters (free energy change of charge separation, magnitude of the reorganization energies of the medium and the high frequency intramolecular vibrations, the rate of relaxation of the medium and the intramolecular high frequency vibrational mode) on the kinetics of population of both the charge separated and the first singlet excited states has been explored. Simulations of the kinetics of the charge separated state population have allowed reproducing the distinctive features of the kinetics observed in the experiment [Wallin, S.; Monnereau, C.; Blart, E.; Gankou, J.-R.; Odobel, F.; Hammarström, L. J. Phys. Chem. A 2010, 114, 1709]: (i) two maxima on short time scale (hundreds of femtoseconds) and long time scale (tens of picoseconds), (ii) the magnitudes of both maxima, and (iii) the depth of the notch between the maxima.
直接连接的 Zn-卟啉-酰亚胺二聚体从第二单重激发态的分子内电荷分离以及随后的电荷复合到第一单重激发态已在涉及三个电子态(第一和第二单重激发态和电荷分离态)及其振动亚能级的模型框架内进行了研究。这些状态之间的跃迁动力学是根据随机点跃迁方法来描述的。模型参数(电荷分离的自由能变化、介质和高频分子内振动的重组能的大小、介质的弛豫速率以及分子内高频振动模式)对电荷分离和第一单重激发态的布居动力学的影响已经被探索。对电荷分离态布居动力学的模拟允许重现实验中观察到的动力学的独特特征[Wallin, S.; Monnereau, C.; Blart, E.; Gankou, J.-R.; Odobel, F.; Hammarström, L. J. Phys. Chem. A 2010, 114, 1709]:(i)在短时间尺度(数百飞秒)和长时间尺度(数十皮秒)上有两个最大值,(ii)两个最大值的幅度,以及(iii)最大值之间的凹口的深度。