Gayathri B R, Mannekutla J R, Inamdar S R
Department of Physics, JSS College, Dharwad, 580 004, India.
J Fluoresc. 2008 Sep;18(5):943-52. doi: 10.1007/s10895-008-0337-y. Epub 2008 Feb 15.
The rotational dynamics of three structurally similar polar molecules viz., coumarin 440, coumarin 151 and coumarin 450 has been studied in alcohols at room temperature using steady-state fluorescence depolarization method and time correlated single photon counting technique. The observed reorientation times of all the three probes are found to be longer than those predicted by Stokes-Einstein-Debye (SED) hydrodynamic theory with stick boundary condition and a deviation towards super-stick behavior is noted. Dielectric friction theories of Nee-Zwanzig and van der Zwan-Hynes, which treat the solute as a point dipole, overestimate the dielectric friction contribution exhibited by all the three coumarins in alcohols. Results are discussed in the light of theoretical models and the possibility of hydrogen bonding between the amino group of the probe molecules and the hydroxyl group of the alcohols.
利用稳态荧光去极化方法和时间相关单光子计数技术,在室温下研究了三种结构相似的极性分子,即香豆素440、香豆素151和香豆素450在醇类中的旋转动力学。发现所有这三种探针的观测重取向时间都比具有粘性边界条件的斯托克斯-爱因斯坦-德拜(SED)流体动力学理论预测的时间长,并且注意到有向超粘性行为的偏差。将溶质视为点偶极子的Nee-Zwanzig和van der Zwan-Hynes介电摩擦理论高估了所有这三种香豆素在醇类中表现出的介电摩擦贡献。根据理论模型以及探针分子的氨基与醇类的羟基之间形成氢键的可能性对结果进行了讨论。