Yoshimura Tomokazu, Umezawa Shin, Fujino Akihiko, Torigoe Kanjiro, Sakai Kenichi, Sakai Hideki, Abe Masahiko, Esumi Kunio
Research Group of Chemistry, Division of Natural Science, Nara Women's University, Nara, Japan.
J Oleo Sci. 2013;62(6):353-62. doi: 10.5650/jos.62.353.
A sugar-based gemini surfactant N,N'-dialkyl-N,N'-dilactobionamideethylenediamine (2C(n)Lac, where n represents alkyl chain lengths of 8, 10, 12, and 14) was synthesized by reacting N,N'-dialkylethylenediamine with lactobionic acid. The adsorption properties of 2C(n)Lac were characterized by equilibrium and dynamic surface tension measurements. Their micellization properties were investigated by steady-state fluorescence using pyrene as a probe and dynamic light scattering (DLS) techniques. The dependence of these properties on the alkyl chain length and the number of sugars was determined through a comparison with the corresponding monomeric surfactants C(n)MLA and previously reported sugar-based gemini surfactants containing monosaccharide gluconamide or disaccharide lactobionamide groups with a hexanediamide spacer. The critical micelle concentration (cmc) and surface tension of 2C(n)Lac are both lower than those of C(n)MLA surfactants. These lower values indicate that the synthesized sugar-based gemini surfactants have excellent micelle-forming ability in solution and high adsorption ability at the air-water interface, which result from strong interactions of the hydrogen bonds between the hydroxyls in lactobionamide groups. When the alkyl chain length of 2C(n)Lac increases to 14, premicellar formation occurs in the solution along with adsorption at the air-water interface at concentrations below the cmc. Furthermore, 2C(n)Lac forms micelles measuring 4 to 12 nm in solution, with no dependence on the alkyl chain length, and their size slightly increases with increasing concentration.
通过使N,N'-二烷基乙二胺与乳糖酸反应,合成了一种基于糖的双子表面活性剂N,N'-二烷基-N,N'-二乳糖酰胺乙二胺(2C(n)Lac,其中n代表8、10、12和14的烷基链长度)。通过平衡和动态表面张力测量对2C(n)Lac的吸附性能进行了表征。使用芘作为探针,通过稳态荧光和动态光散射(DLS)技术研究了它们的胶束化性能。通过与相应的单体表面活性剂C(n)MLA以及先前报道的含有己二酰胺间隔基的单糖葡糖酰胺或二糖乳糖酰胺基团的基于糖的双子表面活性剂进行比较,确定了这些性能对烷基链长度和糖数量的依赖性。2C(n)Lac的临界胶束浓度(cmc)和表面张力均低于C(n)MLA表面活性剂。这些较低的值表明,合成的基于糖的双子表面活性剂在溶液中具有优异的胶束形成能力,在空气-水界面具有高吸附能力,这是由于乳糖酰胺基团中羟基之间的氢键的强相互作用所致。当2C(n)Lac的烷基链长度增加到14时,在溶液中会在低于cmc的浓度下发生预胶束形成,并在空气-水界面发生吸附。此外,2C(n)Lac在溶液中形成尺寸为4至12nm的胶束,与烷基链长度无关,并且其尺寸随浓度增加而略有增加。