Bäverbäck Petra, Oliveira Cristiano L P, Garamus Vasil M, Varga Imre, Claesson Per M, Pedersen Jan Skov
Department of Chemistry and iNANO Interdisciplinary Nanoscience Center, University of Aarhus, Langelandsgade 140, DK-8000 Arhus C, Denmark.
Langmuir. 2009 Jul 7;25(13):7296-303. doi: 10.1021/la900336r.
Mixed micelles formed in aqueous solutions of nonionic surfactants n-dodecyl-hexaethylene-glycol (C12E6) and n-dodecyl-beta-D-maltoside (C12G2) have been studied using small-angle neutron and X-ray scattering (SANS and SAXS) and static light scattering (SLS). Apparent micelle molar masses obtained with SLS were analyzed with a model taking into account both micelle growth and interference effects. The analysis shows that pure C12G2 forms small globular micelles whereas C12E6 and the mixtures form elongated micelles of much higher molar mass. The elongated micelles grow with increased concentration according to mean-field theory, and the masses are larger for increasing amounts of C12E6. To describe the SANS and SAXS data for C12E6 and the mixtures, it was necessary to employ a model with coexisting spherical and spherocylindrical micelles. The SANS and SAXS data were fitted simultaneously using this model with core-shell particles and molecular constraints. All mixtures, as well as pure C12E6, can be described by this model, demonstrating the coexistence of spherical and cylindrical micelles. The spherical micelles are the same size in all samples, whereas the cylindrical micelles grow in length with the fraction of C12E6 in the samples, as well as with concentration, in agreement with the SLS analysis. The mass fraction of surfactant in cylindrical aggregates also increases with the fraction of C12E6 and with overall concentration. The analysis of the SAXS and SANS data for pure C12G2 shows that the micelles are disk-shaped. The presence of elongated micelles in pure C12E6 and in the mixtures demonstrates that the behavior of the mixtures is dominated by C12E6.
利用小角中子散射和X射线散射(SANS和SAXS)以及静态光散射(SLS)研究了在非离子表面活性剂正十二烷基六乙二醇(C12E6)和正十二烷基-β-D-麦芽糖苷(C12G2)的水溶液中形成的混合胶束。用考虑了胶束生长和干涉效应的模型分析了通过SLS获得的表观胶束摩尔质量。分析表明,纯C12G2形成小球状胶束,而C12E6及其混合物形成摩尔质量高得多的细长胶束。根据平均场理论,细长胶束随浓度增加而生长,且C12E6含量增加时质量更大。为了描述C12E6及其混合物的SANS和SAXS数据,有必要采用一个同时存在球形和球柱状胶束的模型。使用该模型结合核壳颗粒和分子约束对SANS和SAXS数据进行了同时拟合。所有混合物以及纯C12E6都可以用该模型描述,证明了球形和圆柱形胶束的共存。所有样品中的球形胶束大小相同,而圆柱形胶束的长度随样品中C12E6的比例以及浓度增加而增加,这与SLS分析结果一致。圆柱形聚集体中表面活性剂的质量分数也随C12E6的比例和总浓度增加而增加。对纯C12G2的SAXS和SANS数据的分析表明,胶束呈盘状。纯C12E6及其混合物中存在细长胶束,这表明混合物的行为主要由C12E6主导。