Department of Chemistry, University of North Bengal, Darjeeling 734013, West Bengal, India.
Spectrochim Acta A Mol Biomol Spectrosc. 2011 Oct 15;81(1):458-65. doi: 10.1016/j.saa.2011.06.038. Epub 2011 Jun 23.
Photophysical behaviour of the anionic xanthene dye, eosin Y (EY) was investigated in solvents of different polarities as well as in the presence of aqueous cationic surfactants. From the correlation between E(T)(30) and Kosower Z values of EY in different solvents, subsequent parameters for EY were determined in the presence of surfactants. A red shift, both in the absorption and emission spectra of EY, was observed with decreasing solvent polarity. Dimerisation of EY was found to be dependent on solvent polarity. Cationic surfactants retarded the process of dimerisation, which were evident from the lower dimerisation constant (K(D)) values, compared to that of in pure water. Dye-surfactant interaction constants were determined at different temperatures (298-318 K) and subsequently the thermodynamic parameters, viz., ΔG°, ΔH° and ΔS° were evaluated using the interaction constant values. The fluorescence spectra of EY followed the same trend as in the absorption spectra, although with lesser extents. Stokes shifts were calculated and correlated with the polarity of the medium. Fluorescence of EY was initially quenched by the cationic surfactants in their pre-micellar region, which then followed a red shift with intensity enhancement. Fluorescence quenching was found to be of Stern-Volmer type where the excited state lifetime of EY remained unchanged in different surfactant media. However, the anisotropy value of EY was changed in the post micellar region of surfactants.
研究了阴离子呫吨染料曙红 Y(EY)在不同极性溶剂以及存在阳离子水基表面活性剂时的光物理行为。从 EY 在不同溶剂中的 E(T)(30)与 Kosower Z 值的相关性,可以确定表面活性剂存在时 EY 的后续参数。随着溶剂极性的降低,观察到 EY 的吸收和发射光谱均发生红移。发现 EY 的二聚化取决于溶剂极性。与在纯水中相比,阳离子表面活性剂会阻碍二聚化过程,这可以从较低的二聚化常数(K(D))值中看出。在不同温度(298-318 K)下测定了染料-表面活性剂相互作用常数,并随后使用相互作用常数值评估了热力学参数,即ΔG°、ΔH°和ΔS°。EY 的荧光光谱与吸收光谱遵循相同的趋势,尽管程度较小。计算了斯托克斯位移并与介质的极性相关联。荧光最初被阳离子表面活性剂在胶束前区域猝灭,然后随着强度的增强发生红移。发现荧光猝灭为 Stern-Volmer 型,在不同的表面活性剂介质中 EY 的激发态寿命保持不变。然而,在表面活性剂的胶束后区域,EY 的各向异性值发生了变化。