Enoch I V Muthu Vijayan, Swaminathan M
Department of Chemistry, Annamalai University, Annamalainagar 608002, Tamil Nadu, India.
J Fluoresc. 2006 Jul;16(4):501-10. doi: 10.1007/s10895-006-0074-z. Epub 2006 Jun 23.
The molecular recognition interaction of beta-cyclodextrin (beta-CDx) was investigated using 2-amino-9-fluorenone (2AFN) by UV, steady-state fluorescence and time-resolved fluorescence measurements in aqueous solution at various pH. The effect of acidity on the ground and excited state equilibria between the neutral and the monocationic forms of 2AFN in water and in beta-CDx environments are studied. Based on the change in the fluorescence spectrum and lifetimes of 2AFN by the addition of beta-CDx, it is found that the unsubstituted part of the 2AFN is encapsulated in the hydrophobic cavity of beta-CDx. The unusual red shift obtained for the protonation of amino group in water and beta-CDx solution is due to large solvent relaxation of the monocation. The structure of the 1:1 inclusion complex between 2AFN and beta-CDx has been proposed on the basis of ground and excited state pKa values and the bond distances obtained by MOPAC/AM 1 data.
在不同pH值的水溶液中,通过紫外、稳态荧光和时间分辨荧光测量,使用2-氨基-9-芴酮(2AFN)研究了β-环糊精(β-CDx)的分子识别相互作用。研究了酸度对2AFN在水和β-CDx环境中中性和单阳离子形式之间基态和激发态平衡的影响。基于添加β-CDx后2AFN荧光光谱和寿命的变化,发现2AFN的未取代部分被包裹在β-CDx的疏水腔内。在水和β-CDx溶液中氨基质子化获得的异常红移是由于单阳离子的大溶剂弛豫。基于基态和激发态pKa值以及通过MOPAC/AM1数据获得的键距,提出了2AFN与β-CDx之间1:1包合物的结构。