Suzuki Hiroyuki, Suzuki Tadashi, Ichimura Teijiro, Ikesue Koichi, Sakai Michinori
Department of Chemistry and Materials Science, Tokyo Institute of Technology, 2-12-1 Ohokayama, Meguro, Tokyo 152-8551, Japan.
J Phys Chem B. 2007 Mar 22;111(11):3062-8. doi: 10.1021/jp0684372. Epub 2007 Feb 23.
The reaction dynamics of ketoprofen (KP) with and without triethylamine (TEA) in methanol both in the ground and the excited states was studied by laser flash photolysis and the pump-probe emission spectroscopy. After the excitation, triplet KP abstracted a hydrogen atom from methanol to form KP ketyl radical (KPH). In the presence of TEA, the acid-base equilibrium state was found to be KP + TEA right arrow over left arrow KP- + TEAH+ in the ground state. The equilibrium constant was determined to be 32 +/- 7. Excited KP- rapidly underwent decarboxylation to form a carbanion resonant with the 3-ethylbenzophenone ketyl biradical anion (3-EBP-), followed by a proton-transfer reaction with TEAH+ to produce the 3-ethylbenzophenone ketyl biradical (3-EBPH). Furthermore, 3-EBPH was found to make a complex with TEA, whose equilibrium constant was obtained to be 18 +/- 2 M(-1). The complex formation ability of 3-EBPH was discussed compared with benzophenone ketyl radical (BPH).
通过激光闪光光解和泵浦-探测发射光谱研究了酮洛芬(KP)在甲醇中有无三乙胺(TEA)时在基态和激发态下的反应动力学。激发后,三重态KP从甲醇中夺取一个氢原子形成KP酮基自由基(KPH)。在TEA存在下,发现基态下的酸碱平衡状态为KP + TEA ⇌ KP⁻ + TEAH⁺。确定平衡常数为32 ± 7。激发态的KP⁻迅速进行脱羧反应,形成与3-乙基二苯甲酮酮基双自由基阴离子(3-EBP⁻)共振的碳负离子,随后与TEAH⁺发生质子转移反应生成3-乙基二苯甲酮酮基双自由基(3-EBPH)。此外,发现3-EBPH与TEA形成络合物,其平衡常数为18 ± 2 M⁻¹。与二苯甲酮酮基自由基(BPH)相比,讨论了3-EBPH的络合形成能力。