Department of Chemistry, The University of Sheffield, Sheffield S3 7HF, UK.
Unilever Research Port Sunlight, Quarry Road East, Bebington, Wirral CH63 3JW, UK.
J Colloid Interface Sci. 2021 Aug 15;596:442-454. doi: 10.1016/j.jcis.2021.03.063. Epub 2021 Mar 26.
Following the observation of a microfibrillar phase in sodium dodecylsulfate (SDS)-glycerol mixtures, it is hypothesized that this phase is a crystalline structure containing SDS and glycerol, where the interaction between sulfate and glycerol layers mediates the co-assembly, which also could be universal for similar systems formed by n-alkyl sulfate homologues. Experiment. n-alkyl sulfate glycerol solutions were studied using a combination of optical microscopy, small- and wide-angle X-ray scattering (SAXS/WAXS). Time-resolved SAXS was employed to determine the phase formation in SDS-glycerol-water mixtures.
The microfibrillar crystalline phase was reproduced in even-chained n-alkyl sulfates with a chain length between 12 and 18 carbon atoms, where the phase lamellar period increased uniformly with the alkyl chain length. Reconstruction of electron density profiles from the diffraction patterns allowed the lamellar structural motif of the phase, the glycerol location and stoichiometry to be determined. When SDS-glycerol-water mixtures with water concentration below 6 wt% are isothermally solidified at 20 °C, SDS-glycerol crystals and/or anhydrous SDS form, where the former is inhibited by the latter at higher water concentrations. The learnings from the SDS-glycerol phase formation allows new gels to be created, utilising the glycerol-sulfate motif generating microfibrils. This expands the knowledge of the applicable formulation space for SDS-water containing mixtures.
在观察到十二烷基硫酸钠(SDS)-甘油混合物中的微纤状相之后,假设该相是一种含有 SDS 和甘油的结晶结构,其中硫酸酯和甘油层之间的相互作用介导共组装,这也可能适用于由 n-烷基硫酸盐同系物形成的类似体系。实验。使用组合光学显微镜、小角和广角 X 射线散射(SAXS/WAXS)研究了 n-烷基硫酸盐甘油溶液。时间分辨 SAXS 用于确定 SDS-甘油-水混合物中的相形成。
即使在具有 12 至 18 个碳原子的链长的偶数链 n-烷基硫酸盐中也复制了微纤状结晶相,其中相层状周期随烷基链长度均匀增加。从衍射图案重建电子密度轮廓允许确定该相的层状结构基序、甘油位置和化学计量。当 SDS-甘油-水混合物在 20°C 下以低于 6wt%的水浓度等温固化时,形成 SDS-甘油晶体和/或无水 SDS,在较高的水浓度下,前者被后者抑制。从 SDS-甘油相形成中获得的知识可以创建新的凝胶,利用甘油-硫酸盐基序生成微纤维。这扩展了含有 SDS 的水混合物的适用配方空间的知识。