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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Electron-Transfer Dynamics in a Zn-Porphyrin-Quinone Cyclophane: Effects of Solvent, Vibrational Relaxations, and Conical Intersections
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Electron-Transfer Dynamics in a Zn-Porphyrin-Quinone Cyclophane: Effects of Solvent, Vibrational Relaxations, and Conical Intersections

机译:Zn-卟啉 - 醌环烷烷中的电子转移动力学:溶剂,振动松弛和锥形交叉口的影响

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摘要

Rate constants for photochemical charge separation and recombination in a zinc-porphyrin-benzoquinone cyclophane are calculated by an approach that was developed recently to include effects of vibrational dephasing and relaxation and to reduce the dependence on freely adjustable parameters. The theory is extended to treat the rate of vibrational relaxation individually for each vibrational sublevel of the initial charge-transfer product. Quantum-mechanical/molecular-mechanical simulations of the reactions in iso-octane, toluene, dichloromethane, and acetonitrile suggest that charge separation occurs at conical intersections in the two more polar solvents, but at avoided crossings in the nonpolar solvents. In agreement with experimental measurements, however, the calculated rate constants for charge separation are similar in polar and nonpolar solvents. Charge recombination to the ground state is found to have electronic coupling factors smaller than that of charge separation and to be affected more strongly by interactions with the solvent.
机译:用于光化学电荷分离和在锌 - 卟啉 - 苯醌环中的重组的速率常数通过最近开发的方法来计算包括振动脱离和弛豫的影响,并减少对可自由调节参数的依赖性的影响。该理论扩展以对初始电荷转移产品的每个振动浮度单独处理振动弛豫速率。量子 - 机械/分子机械模拟异辛烷,甲苯,二氯甲烷和乙腈的反应表明,在两种极性溶剂中的锥形交叉处发生电荷分离,但在非极性溶剂中的避免交叉处发生。然而,在实验测量方面,电荷分离的计算速率常数在极性和非极性溶剂中类似。发现对地状态的电荷重组具有小于电荷分离的电子耦合因子,并通过与溶剂的相互作用更强烈地影响。

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