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烷基羧酸钠/盐酸胍水溶液的自组装、发泡和乳化性能。

Self-assembly, foaming, and emulsifying properties of sodium alkyl carboxylate/guanidine hydrochloride aqueous mixtures.

机构信息

UR1268, INRA Nantes, Biopolymères Interactions Assemblages, rue de la Géraudière, 44316 Nantes, France.

出版信息

Langmuir. 2011 Apr 19;27(8):4505-13. doi: 10.1021/la2002404. Epub 2011 Mar 15.

DOI:10.1021/la2002404
PMID:21405069
Abstract

Unsaturated fatty acids may be extracted from various agricultural resources and are widely used as soaps in the industry. However, there also exist a large variety of saturated and hydroxy fatty acids in nature, but their metal salts crystallize at room temperature in water, hampering their use in biological and chemical studies or for industrial applications. Addition of guanidine hydrochloride (GuHCl) to sodium salt of myristic acid has been shown to prevent its crystallization in water, forming stable flat bilayers at room temperature. Herein, we extend this finding to two other saturated fatty acids (palmitic and stearic acids) and two hydroxyl fatty acids (juniperic and 12 hydroxy stearic acids) and study more deeply (by using small angle neutron scattering) the supramolecular assemblies formed in both saturated and hydroxyl fatty acid systems. In addition, we take the advantage that crystallization no longer occurs at room temperature in the presence of GuHCl to study the foaming and emulsifying properties of those fatty acid dispersions. Briefly, our results show that all fatty acids, even juniperic acid, which is a bola lipid, are arranged in a bilayer structure that may be interdigitated. Depending on the nature of the fatty acid, the systems exhibit good foamability and foam stability (except for juniperic acid), and emulsion stability was good. Those findings should be of interest for using saturated long chain (and hydroxyl) fatty acids as surfactants for detergency or even materials chemistry.

摘要

不饱和脂肪酸可以从各种农业资源中提取出来,广泛用作工业中的肥皂。然而,自然界中也存在大量的饱和和羟基脂肪酸,但它们的金属盐在室温下会在水中结晶,这阻碍了它们在生物和化学研究或工业应用中的使用。向肉豆蔻酸钠中添加盐酸胍(GuHCl)已被证明可以防止其在水中结晶,在室温下形成稳定的平面双层。在这里,我们将这一发现扩展到另外两种饱和脂肪酸(棕榈酸和硬脂酸)和两种羟基脂肪酸(杜松酸和 12 羟基硬脂酸),并更深入地研究(使用小角中子散射)在饱和和羟基脂肪酸体系中形成的超分子组装。此外,我们利用在 GuHCl 存在下室温下不再结晶的优势来研究这些脂肪酸分散体的发泡和乳化性能。简而言之,我们的结果表明,所有脂肪酸,甚至是具有双锥形结构的杜松酸,都排列在双层结构中,可能是互穿插的。根据脂肪酸的性质,这些体系表现出良好的发泡性和泡沫稳定性(除了杜松酸),并且乳液稳定性良好。这些发现对于使用长链饱和(和羟基)脂肪酸作为清洁剂中的表面活性剂甚至是材料化学中的表面活性剂应该具有重要意义。

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