Borovkov Vsevolod I, Beregovaya Irina V, Shchegoleva Lyudmila N, Blinkova Svetlana V, Ovchinnikov Dmitry A, Gurskaya Larisa Yu, Shteingarts Vitaly D, Bagryansky Victor A, Molin Yuriy N
†Voevodsky Institute of Chemical Kinetics and Combustion, Siberian Branch of Russian Academy of Science, 3 Institutskaya Street, Novosibirsk 630090, Russia.
‡Novosibirsk State University, 2 Pirogova Street, Novosibirsk 630090, Russia.
J Phys Chem A. 2015 Aug 6;119(31):8443-51. doi: 10.1021/acs.jpca.5b02617. Epub 2015 Jul 23.
Radical anions (RAs) are the key intermediates of the selective hydrodefluorination of polyfluoroarenes. We used the techniques of optically detected electron paramagnetic resonance (OD EPR), time-resolved fluorescence, time-resolved magnetic field effect (TR MFE), and the density functional theory to study the possibility of RAs formation from 4-aminononafluorobiphenyl (1) and pentafluoroaniline (2) and estimate their lifetimes and decay channels. To our knowledge, both RAs have not been detected earlier. We have registered the OD EPR spectrum for relatively stable in nonpolar solutions 1(-•) but failed to register the spectra for 2(-•). However, we have managed to fix the 2(-•) by the TR MFE method and obtained its hyperfine coupling constants. The lifetime of 2(-•) was found to be only a few nanoseconds. The activation energy of its decay was estimated to be 3.6 ± 0.3 kcal/mol. According to the calculation results, the short lifetime of 2(-•) is due to the RA fast fragmentation with the F(-) elimination from ortho-position to the amine group. The calculated energy barrier, 3.2 kcal/mol, is close to the experimental value. The fragmentation of 2(-•) in a nonpolar solvent is possible due to the stabilization of the incipient F(-) anion by the binding with the amine group proton.
自由基阴离子(RAs)是多氟芳烃选择性加氢脱氟的关键中间体。我们运用光探测电子顺磁共振(OD EPR)、时间分辨荧光、时间分辨磁场效应(TR MFE)技术以及密度泛函理论,研究了由4-氨基九氟联苯(1)和五氟苯胺(2)形成RAs的可能性,并估算了它们的寿命和衰变通道。据我们所知,此前尚未检测到这两种RAs。我们记录了在非极性溶液中相对稳定的1(-•)的OD EPR谱,但未能记录到2(-•)的谱。然而,我们通过TR MFE方法成功检测到了2(-•),并获得了其超精细耦合常数。发现2(-•)的寿命仅为几纳秒。估计其衰变的活化能为3.6±0.3千卡/摩尔。根据计算结果,2(-•)寿命短是由于RA快速碎片化,从胺基的邻位消除F(-)。计算得到的能垒为3.2千卡/摩尔,与实验值接近。在非极性溶剂中,2(-•)的碎片化是可能的,这是因为初始的F(-)阴离子通过与胺基质子结合而得到稳定。