Nishiyama Y, Fukuda M, Terazima M, Kimura Y
Department of Chemistry, Graduate School of Science, Kyoto University, Kyoto 606-8502, Japan.
J Chem Phys. 2008 Apr 28;128(16):164514. doi: 10.1063/1.2901973.
Transient grating (TG) spectroscopy has been applied to the photoinduced hydrogen-abstraction reaction of benzophenone (BP) in various kinds of room temperature ionic liquids (RTILs). After the photoexcitation of BP in RTILs, the formation of a benzophenone ketyl radical (BPK) was confirmed by the transient absorption method, and the TG signal was analyzed to determine the diffusion coefficients of BPK and BP. For comparison, diffusion coefficients of carbon monoxide (CO), diphenylacetylene (DPA), and diphenylcyclopropenone (DPCP) in various RTILs were determined by the TG method using the photodissociation reaction of DPCP. While the diffusion coefficients of the stable molecules BP, DPA, and DPCP were always larger than those predicted by the Stokes-Einstein (SE) relation in RTILs, that of BPK was much smaller than those of the stable molecules and relatively close to that predicted by the SE relation in all solvents. For the smallest molecule CO, the deviation from the SE relation was evident. The diffusion coefficients of stable molecules are better represented by a power law of the inverse of the viscosity when the exponent was less than unity. The ratios of the diffusion coefficient of BP to that of BPK were larger in RTILs (2.7-4.0) than those (1.4-2.3) in conventional organic solvents. The slow diffusion of BPK in RTILs was discussed in terms of the fluctuation of the local electric field produced by the surrounding solvent ions.
瞬态光栅(TG)光谱已应用于各种室温离子液体(RTILs)中二苯甲酮(BP)的光致夺氢反应。在RTILs中对BP进行光激发后,通过瞬态吸收法确认了二苯甲酮酮基自由基(BPK)的形成,并对TG信号进行分析以确定BPK和BP的扩散系数。为作比较,使用二苯基环丙烯酮(DPCP)的光解离反应,通过TG法测定了一氧化碳(CO)、二苯乙炔(DPA)和二苯基环丙烯酮(DPCP)在各种RTILs中的扩散系数。虽然稳定分子BP、DPA和DPCP在RTILs中的扩散系数总是大于斯托克斯 - 爱因斯坦(SE)关系预测的值,但BPK的扩散系数比稳定分子的小得多,并且在所有溶剂中相对接近SE关系预测的值。对于最小的分子CO,与SE关系的偏差很明显。当指数小于1时,稳定分子的扩散系数用粘度倒数的幂律能更好地表示。在RTILs中,BP与BPK扩散系数的比值(2.7 - 4.0)大于在传统有机溶剂中的比值(1.4 - 2.3)。从周围溶剂离子产生的局部电场波动方面讨论了BPK在RTILs中的缓慢扩散。