Abdel-Shafi Ayman A, Al-Shihry Shar S
Department of Chemistry, College of Science, King Faisal University, P.O. Box 400, Hofuf, Al-Hassa, 31982, Saudi Arabia.
Spectrochim Acta A Mol Biomol Spectrosc. 2009 Apr;72(3):533-7. doi: 10.1016/j.saa.2008.10.052. Epub 2008 Nov 12.
Fluorescence enhancement of 1-naphthol-5-sulfonate (1N5S) upon inclusion in beta-cyclodextrin is studied by spectrophotometry and spectrofluorimetery techniques. The spectral shifts were only observed in the emission spectra in different solvents and were found to be directly correlated to the solvent's hydrogen-bond donor strength (alpha). Spectral changes in the absorption spectra upon the addition of beta-cyclodextrin to 1N5S in aqueous medium were too small to allow for the determination of the binding constant. On the other hand; fluorescence measurements show that the emission of both the anionic and neutral forms of 1N5S increase upon the addition of beta-cyclodextrin with an increase in the quantum yield by about 60%. Fluorescence measurements show 1:1 inclusion of 1N5S in the beta-cyclodextrin cavity with an association constant of 88+/-10M(-1). (1)H NMR studies are used to confirm the inclusion and to provide information on the geometry of 1N5S inside the cavity of beta-cyclodextrin.
通过分光光度法和荧光光谱法研究了1-萘酚-5-磺酸盐(1N5S)被包合于β-环糊精后的荧光增强情况。仅在不同溶剂中的发射光谱中观察到光谱位移,并且发现其与溶剂的氢键给体强度(α)直接相关。在水介质中向1N5S中加入β-环糊精后,吸收光谱的变化太小,无法确定结合常数。另一方面,荧光测量表明,加入β-环糊精后,1N5S的阴离子和中性形式的发射均增加,量子产率提高约60%。荧光测量表明1N5S以1:1的比例包合于β-环糊精空腔中,缔合常数为88±10M⁻¹。¹H NMR研究用于确认包合情况,并提供有关β-环糊精空腔内1N5S几何结构的信息。