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环糊精-表面活性剂包合物缔合常数的测定:一种基于表面张力测量的数值方法

Determination of Association Constants for Cyclodextrin-Surfactant Inclusion Complexes: A Numerical Method Based on Surface Tension Measurements.

作者信息

Lu R, Hao J, Wang H, Tong L

机构信息

Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences, Lanzhou, 730000, People's Republic of China

出版信息

J Colloid Interface Sci. 1997 Aug 1;192(1):37-42. doi: 10.1006/jcis.1997.4997.

Abstract

Inclusion complexes of beta-cyclodextrin (beta-CD) with sodium octyl sulfonate (C8As), sodium dodecyl sulfonate (C12As), and sodium hexadecyl sulfonate (C16As) in aqueous solutions are studied by surface tension measurement at the air/water interface at different temperatures. At fixed concentrations of the surfactants, the surface tension increases with an increase in beta-CD concentration to a maximum value, at which it holds. The surface tension curves of the surfactants in the presence of beta-CD are higher than those in the absence of beta-CD. The curves rise higher with the increase in beta-CD concentration for each surfactant. The apparent critical micelle concentrations (CMC*) of the surfactants vary linearly with beta-CD concentration. The CMC* and surface tension values (including those after the CMC*) for the same system decrease with increase in temperature. A numerical method based on surface tension measurements is developed to determine the association constants for 1:1 inclusion complexes. This method is very reliable and easy to perform. The results demonstrate that the longer the hydrophobic tail of the surfactant, the greater the association constant with beta-CD, and that for the same surfactant the association constant is higher at lower temperatures.

摘要

通过在不同温度下测量空气/水界面的表面张力,研究了β-环糊精(β-CD)与辛基磺酸钠(C8As)、十二烷基磺酸钠(C12As)和十六烷基磺酸钠(C16As)在水溶液中的包合物。在表面活性剂浓度固定的情况下,表面张力随β-CD浓度的增加而升高至最大值并保持不变。存在β-CD时表面活性剂的表面张力曲线高于不存在β-CD时的曲线。每种表面活性剂的曲线随β-CD浓度的增加而升得更高。表面活性剂的表观临界胶束浓度(CMC*)随β-CD浓度呈线性变化。同一体系的CMC和表面张力值(包括CMC之后的值)随温度升高而降低。开发了一种基于表面张力测量的数值方法来确定1:1包合物的缔合常数。该方法非常可靠且易于实施。结果表明,表面活性剂的疏水尾越长,与β-CD的缔合常数越大,并且对于相同的表面活性剂,缔合常数在较低温度下更高。

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