Barry Justin T, Tyler David R
Department of Chemistry and Biochemistry, 1253 University of Oregon, Eugene, Oregon 97403, United States.
Inorg Chem. 2020 Oct 5;59(19):13875-13879. doi: 10.1021/acs.inorgchem.0c01441. Epub 2020 Sep 23.
This study measured and compared the combination efficiencies () of geminate radical cage pairs to nongeminate (collisional) radical cage pairs ('). For the [Cp'(CO)Mo·, ·Mo(CO)Cp'] radical cage pair, ' was found to be smaller than in solutions having the same viscosity. It is proposed that the difference in and ' arises because the radicals in the collisional cage pair are less likely to have the correct orbital orientation for radical-radical combination to occur, whereas photochemically generated geminate cage pairs are more likely to have the correct orbital orientation. As predicted, and ' both increase when the microviscosity of a solution increases.
本研究测量并比较了双自由基笼对与非双自由基(碰撞型)笼对(')的复合效率()。对于[Cp'(CO)Mo·, ·Mo(CO)Cp']自由基笼对,发现在具有相同粘度的溶液中,'小于 。有人提出, 和 '存在差异的原因是,碰撞型笼对中的自由基不太可能具有发生自由基 - 自由基复合所需的正确轨道取向,而光化学产生的双自由基笼对更有可能具有正确的轨道取向。正如所预测的那样,当溶液的微粘度增加时, 和 '都会增加。