Yoshimura Tomokazu, Sakato Ayako, Esumi Kunio
Research Group of Chemistry, Division of Natural Science, Nara Women's University, Nara, Japan.
J Oleo Sci. 2013;62(8):579-86. doi: 10.5650/jos.62.579.
Amino acid-based anionic gemini surfactants (2C(n)diCys, where n represents an alkyl chain with a length of 10, 12, or 14 carbons and "di" and "Cys" indicate adipoyl and cysteine, respectively) were synthesized using the amino acid cysteine. Biodegradability, equilibrium surface tension, and dynamic light scattering were used to characterize the properties of gemini surfactants. Additionally, the effects of alkyl chain length, number of chains, and structure on these properties were evaluated by comparing previously reported gemini surfactants derived from cystine (2C(n)Cys) and monomeric surfactants (C(n)Cys). 2C(n)diCys shows relatively higher biodegradability than does C(n)Cys and previously reported sugar-based gemini surfactants. Both critical micelle concentration (CMC) and surface tension decrease when alkyl chain length is increased from 10 to 12, while a further increase in chain length to 14 results in increased CMC and surface tension. This indicates that long-chain gemini surfactants have a decreased aggregation tendency due to the steric hindrance of the bulky spacer as well as premicelle formation at concentrations below the CMC and are poorly packed at the air/water interface. Formation of micelles (measuring 2 to 5 nm in solution) from 2C(n)diCys shows no dependence on alkyl chain length. Further, shaking the mixtures of aqueous 2C(n)diCys surfactant solutions and squalane results in the formation of oil-in-water type emulsions. The highly stable emulsions are formed using 2C₁₂diCys or 2C₁₄diCys solution and squalane in a 1:1 or 2:1 volume ratio.
基于氨基酸的阴离子双子表面活性剂(2C(n)diCys,其中n代表含有10、12或14个碳原子的烷基链,“di”和“Cys”分别表示己二酰基和半胱氨酸)是使用氨基酸半胱氨酸合成的。通过生物降解性、平衡表面张力和动态光散射来表征双子表面活性剂的性质。此外,通过比较先前报道的源自胱氨酸的双子表面活性剂(2C(n)Cys)和单体表面活性剂(C(n)Cys),评估了烷基链长度、链数和结构对这些性质的影响。2C(n)diCys显示出比C(n)Cys和先前报道的糖基双子表面活性剂更高的生物降解性。当烷基链长度从10增加到12时,临界胶束浓度(CMC)和表面张力均降低,而链长度进一步增加到14则导致CMC和表面张力增加。这表明长链双子表面活性剂由于庞大间隔基的空间位阻以及在低于CMC的浓度下形成前胶束,其聚集倾向降低,并且在空气/水界面处堆积不佳。由2C(n)diCys形成的胶束(在溶液中尺寸为2至5nm)显示出与烷基链长度无关。此外,振荡2C(n)diCys表面活性剂水溶液和角鲨烷的混合物会导致形成水包油型乳液。使用2C₁₂diCys或2C₁₄diCys溶液与角鲨烷以1:1或2:1的体积比可形成高度稳定的乳液。