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Effect of laser intensity on the determination of intermolecular electron transfer rate constants - Observation of Marcus inverted region in photoinduced back electron transfer reactions

机译:激光强度对分子间电子转移速率常数测定的影响 - 光诱导反向电子转移反应中marcus反转区的观察

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摘要

The light intensity and concentration dependence of the photoproduct yield are investigated in a monophotonic process. The relationship of the photoproduct yield with the laser intensity and the complex concentration for a monophotonic process is derived under laser flash photolysis. The relationship is confirmed experimentally in a monophotonic process, i.e., triplet-triplet transition for a Cu(I) complex Cu6(DMNSN′)6 (DMNSN′=4,6-dimethylpyrimidine-2-thiolate). At low light intensity, the relationship can be approximated by a linear inverse square root dependence on the light intensity. Based on this equation, a method is proposed to determine the intrinsic back electron transfer rate constant kET b in photoinduced intermolecular electron transfer reactions, precluding the effect from the diffusional encounter pairs. The Marcus "inverted region" is observed by using the method in photoinduced back electron transfer reactions of [Au2(dppm)2](ClO4)2 (dppm=bis(diphenylphosphino)methane) with a series of substituted pyridinium acceptors. © 1998 American Institute of Physics.
机译:在单光子过程中研究了光产物产​​量的光强度和浓度依赖性。在激光闪光光解作用下,得出了单光子过程中光产物产率与激光强度和复合物浓度的关系。这种关系在单光子过程中得到了实验证实,即Cu(I)配合物Cu6(DMNSN')6(DMNSN'= 4,6-二甲基嘧啶-2-硫醇盐)的三重态-三重态跃迁。在低光强度下,可以通过线性反平方根对光强度的依赖性来近似该关系。基于该方程,提出了一种确定光致分子间电子转移反应中固有的反向电子转移速率常数kET b的方法,该方法排除了扩散相遇对的影响。通过使用该方法在[Au2(dppm)2](ClO4)2(dppm =双(二苯基膦基)甲烷)与一系列取代的吡啶鎓受体的光诱导的反向电子转移反应中观察到马库斯的“反向区域”。 ©1998美国物理研究所。

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