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阳离子三聚体型季铵盐与阴离子正辛基硫酸钠表面活性剂的混合胶束性质

Mixed micellar properties of cationic trimeric-type quaternary ammonium salts and anionic sodium n-octyl sulfate surfactants.

作者信息

Yoshimura Tomokazu, Ohno Akiko, Esumi Kunio

机构信息

Department of Applied Chemistry and Institute of Colloid and Interface Science, Tokyo University of Science, Kagurazaka, Shinjuku-ku, Tokyo 162-8601, Japan.

出版信息

J Colloid Interface Sci. 2004 Apr 1;272(1):191-6. doi: 10.1016/j.jcis.2003.12.021.

Abstract

The properties of quaternary ammonium salt-type cationic trimeric surfactants (m-2-m-2-m, m represents the carbon atom number in alkyl chain lengths of 8, 10, and 12) and oppositely charged anionic monomeric surfactant, sodium n-octyl sulfate (SOS), were characterized by employing several techniques such as static surface tension, fluorescence spectroscopy, and dynamic light-scattering measurements. The critical micelle concentrations (cmc) of m-2-m-2-m were much lower than those of the corresponding dimeric and monomeric surfactants, and decreased with increasing chain length. The addition of SOS to m-2-m-2-m solutions resulted in a further decrease of the cmc. The mixed surfactants showed higher efficiencies in lowering the surface tension than the individual surfactants. The fluorescence measurements suggested the formation of mixed micelles with a hydrophobic environment in the solutions even at lower concentrations. The dynamic light-scattering study indicated the presence of two different kinds of aggregates with different hydrodynamic diameters. The larger one was attributed to the mixed micelle of m-2-m-2-m and SOS. These results indicated a decline of the electrostatic repulsion between cationic head groups through the incorporation of anionic surfactant into the mixed surfactants.

摘要

通过采用静态表面张力、荧光光谱和动态光散射测量等多种技术,对季铵盐型阳离子三聚体表面活性剂(m-2-m-2-m,m表示烷基链长度中的碳原子数,分别为8、10和12)以及带相反电荷的阴离子单体表面活性剂正辛基硫酸钠(SOS)的性质进行了表征。m-2-m-2-m的临界胶束浓度(cmc)远低于相应的二聚体和单体表面活性剂,且随链长增加而降低。向m-2-m-2-m溶液中添加SOS导致cmc进一步降低。混合表面活性剂在降低表面张力方面比单一表面活性剂具有更高的效率。荧光测量表明,即使在较低浓度下,溶液中也形成了具有疏水环境的混合胶束。动态光散射研究表明存在两种具有不同流体动力学直径的聚集体。较大的一种归因于m-2-m-2-m和SOS的混合胶束。这些结果表明,通过将阴离子表面活性剂掺入混合表面活性剂中,阳离子头基之间的静电排斥作用减弱。

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