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氧在电子转移过程中的特殊作用。

Unusual role of oxygen in electron-transfer processes.

作者信息

Smirnov Sergei, Vlassiouk Ivan, Kutzki Olaf, Wedel Michael, Montforts Franz-Peter

机构信息

Department of Chemistry and Biochemistry, New Mexico State University, Las Cruces, New Mexico, USA.

出版信息

J Am Chem Soc. 2002 Apr 24;124(16):4212-3. doi: 10.1021/ja017616o.

Abstract

Molecular oxygen's unique involvement in electron-transfer processes is demonstrated on a series of dyads between porphyrin derivatives and fullerene C60. It has been shown for the first time that oxygen can serve as an inhibitor of back electron transfer by enhancing intersystem crossing of a singlet radical ion pair into its triplet state. The effect is observed only when energy of the charge-separated state is lower than that of the locally excited triplet states. Due to the spin statistics, the reverse intersystem crossing is less efficient, allowing use of oxygen and other paramagnetic species for impeding charge recombination in various electron-transfer systems.

摘要

分子氧在电子转移过程中的独特作用在一系列卟啉衍生物与富勒烯C60之间的二元体系中得到了证实。首次表明,氧可通过增强单重态自由基离子对到三重态的系间窜越,作为反向电子转移的抑制剂。仅当电荷分离态的能量低于局域激发三重态的能量时,才能观察到这种效应。由于自旋统计,反向系间窜越效率较低,这使得氧和其他顺磁物种可用于阻止各种电子转移体系中的电荷复合。

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