A. Datta, D. Mandal, S. Pal, Swati Das, K. Bhattacharyya
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引用次数: 33
摘要
以2,6-对甲苯基萘磺酸盐(TNS)为荧光探针,采用稳态和时间分辨发射光谱法研究了Triton X-100 (TX)与α-和β-环糊精(CD)的相互作用。临界胶束浓度(cmcc)由TNS发射强度和寿命的突然增加点表示。在β-CD浓度为10 mM时,β-CD的表观c.m.c.显著增加了28±1倍,但在相似浓度的α-CD存在下,c.m.c.基本不受影响。这是由于TX与大的β-CD腔结合非常强,而与小的α-CD结合可以忽略不计。在低于cmc的浓度下,在含有β-CD的TNS水溶液中加入TX后,发射强度降低。这归因于TNS和TX与β-CD的竞争性结合。这导致TNS被TX表面活性剂分子从CD腔中置换。TX与β-CD的结合常数约为9400±1300 L mol-1。
Interaction of Triton X-100 with cyclodextrins. A fluorescence study
The interaction of Triton X-100 (TX) with α- and β-cyclodextrins (CD) has been studied, using 2,6-p-toluidinonaphthalene sulfonate (TNS) as a fluorescent probe, by steady-state and time-resolved emission spectroscopy. The critical micellar concentration (c.m.c.) is indicated by the point of abrupt increase of emission intensity and lifetime of TNS. The apparent c.m.c. increases significantly in the presence of β-CD by as much as 28±1 times at 10 mM β-CD but remains more or less unaffected in the presence of α-CD at similar concentrations. This is attributed to the very strong binding of TX with the large β-CD cavity and negligible binding to the small α-CD. At concentrations below the c.m.c., on addition of TX to aqueous TNS solution containing β-CD the emission intensity decreases. This is ascribed to the competitive binding of TNS and TX with β-CD. This causes displacement of TNS from the CD cavity by the TX surfactant molecules. The binding constant of TX with β-CD is found to be ca. 9400±1300 L mol-1.