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The cooling process effect on the bilayer phase state of the CTAC/cetearyl alcohol/water surfactant gel

机译:对CTAC / Cetearyl /水表面活性剂凝胶的双层相位状的冷却过程效果

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Gel formation by surfactant molecules is generally controlled by thermodynamics rather than kinetics. Mixtures of long-chain alcohols and surfactants are widely used in various cosmetic and pharmaceutical products. The cooling rate used to produce the products is known to be a key parameter to control the rheological properties and the final texture. However, the physical-chemistry links between the cooling process and the rheological properties are still unknown. Here, we investigated the mechanical properties and microstructure of a surfactant gel formulated with cetyltrimethylammonium chloride (CTAC) and cetearyl alcohol in water by using a multi-technique approach involving rheology, small-angle X-ray scattering (SAXS) and diffusion NMR. The gels, formed by two cooling processes fast and slow cooling, respectively from a high-temperature mixture, have locally a lamellar structure with periodic repeat distances of 31.4 and 28.5 nm for fast and slow cooling, respectively. The cross-polarized microscopy images reveal the presence of multilamellar vesicles (MLVs). These data on the supramolecular aggregates allow rationalizing the mechanical behavior of the two samples. In fact, the elastic, G', and the viscous, G '', moduli were detected to be ca. 4 times higher for the fast-cooling (quenched) sample than for the slow-cooling (relaxed) sample.
机译:表面活性剂分子的凝胶形成通常由热力学而不是动力学控制。长链醇和表面活性剂的混合物广泛用于各种化妆品和药品。已知用于生产产品的冷却速率是控制流变性能和最终质地的关键参数。然而,冷却过程和流变性质之间的物理化学链接仍然未知。在此,我们通过使用涉及流变学的多技术方法,小角X射线散射(SAXS)和扩散NMR,研究了用甲酰基三甲基氯化铵(CTAC)和Cetearyl醇的机械性能和微观结构。通过两个冷却过程形成的凝胶分别与高温混合物的快速和缓慢冷却,具有局部地板结构,周期性重复距离为31.4和28.5nm,分别用于快速和缓慢的冷却。十字极化显微镜图像显示存在多岩囊泡(MLV)。上分子聚集体的这些数据允许合理化两个样品的机械行为。事实上,弹性,g'和粘性,g'',moduli被检测到ca。快冷(淬火)样本比缓慢冷却(弛豫)样品更高的4倍。

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