Laser Spectroscopy Programme, Department of Physics, Karnatak University, Dharwad, 580 003, India.
J Fluoresc. 2010 Jul;20(4):797-808. doi: 10.1007/s10895-010-0606-4. Epub 2010 Mar 2.
The rotational diffusion of three probes: coumarin 522B (C522B), coumarin 307 (C307) and coumarin 138 (C138) with nearly identical size was studied at room temperature employing steady-state and time-resolved fluorescence anisotropy techniques in series of alcohols and alkanes. Experimental observations indicate faster rotation of C138 compared to the other two dyes in alcohols and a faster rotation of C522B than C307 in alkanes. The dielectric friction theories of Nee-Zwanzig (NZ) and van der Zwan-Hynes (ZH) were employed to estimate the friction experienced by the probes in alcohols, in addition to the mechanical friction calculated using Stokes-Einstein-Debye (SED) hydrodynamic with slip boundary condition and Dote-Kivelson-Schwartz (DKS) quasihydrodynamic theories. The observed reorientation times for the three probes do not follow the trend predicted by dielectric friction theories of NZ and ZH. The dipole moments determined from solvatochromic techniques were found to be different for the three probes.
室温下,我们采用稳态和时间分辨荧光各向异性技术,研究了尺寸几乎相同的三种探针:香豆素 522B(C522B)、香豆素 307(C307)和香豆素 138(C138)在一系列醇和烷烃中的旋转扩散。实验观察表明,与其他两种染料相比,C138 在醇中的旋转速度更快,而 C522B 在烷烃中的旋转速度比 C307 更快。我们采用 Nee-Zwanzig(NZ)和 van der Zwan-Hynes(ZH)的介电摩擦理论,除了使用 Stokes-Einstein-Debye(SED)带有滑移边界条件的流体力学和 Dote-Kivelson-Schwartz(DKS)拟流体动力学理论计算机械摩擦之外,还用来估算探针在醇中的摩擦。三种探针的重取向时间观察值不符合 NZ 和 ZH 介电摩擦理论的预测趋势。从溶剂化变色技术确定的偶极矩对于三种探针来说是不同的。