Tojo Sachiko, Yasui Shinro, Fujitsuka Mamoru, Majima Tetsuro
Institute of Scientific and Industrial Research (SANKEN), Osaka University, Ibaraki, Osaka 567-0047, Japan.
J Org Chem. 2006 Oct 13;71(21):8227-32. doi: 10.1021/jo061319q.
One-electron oxidation of triarylphosphines (Ar3P, Ar = phenyl and substituted phenyl) in benzonitrile (PhCN) has been studied using pulse radiolysis technique. One-electron oxidation of Ar3P occurred to yield the radical cation (Ar3P*+) which showed an intense absorption with a peak at 360-370 nm together with a broad band at 500-600 nm. The addition of molecular oxygen (O2) to the phosphorus atom of Ar3P*+ took place at the second-order rate constant of 10(7)-10(9) dm(3) mol(-1) s(-1) to yield the peroxyl triarylphosphinyl radical cation (Ar3P+OO*). It is found that the electron-releasing substituents on the para position of the phenyl ring of Ar3P influence the rate constants of the reaction of Ar3P*+ with O2 and that o-methyl substituents on the phenyl ring influence the reactivity of Ar3P+OO*.
采用脉冲辐解技术研究了三芳基膦(Ar3P,Ar = 苯基和取代苯基)在苯甲腈(PhCN)中的单电子氧化反应。Ar3P发生单电子氧化生成自由基阳离子(Ar3P*+),其在360 - 370 nm处有一个强吸收峰,同时在500 - 600 nm处有一个宽峰。Ar3P*+的磷原子与分子氧(O2)以10(7)-10(9) dm(3) mol(-1) s(-1)的二级反应速率常数发生加成反应,生成过氧三芳基膦酰基自由基阳离子(Ar3P+OO*)。研究发现,Ar3P苯环对位上的给电子取代基影响Ar3P*+与O2反应的速率常数,而苯环上的邻甲基取代基影响Ar3P+OO*的反应活性。