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液晶相及其在甘油单油酸酯和甘油单油酸醚水混合物中的分散体。

Liquid crystalline phases and their dispersions in aqueous mixtures of glycerol monooleate and glyceryl monooleyl ether.

作者信息

Popescu Georgeta, Barauskas Justas, Nylander Tommy, Tiberg Fredrik

机构信息

Physical Chemistry 1, Center for Chemistry and Chemical Engineering, Lund University, Lund, Sweden.

出版信息

Langmuir. 2007 Jan 16;23(2):496-503. doi: 10.1021/la062344u.

Abstract

The aqueous phase behavior of mixtures of 1-glycerol monooleate (GMO) and its ether analogue, 1-glyceryl monooleyl ether (GME) has been investigated by a combination of polarized microscopy, X-ray diffraction, and NMR techniques. Three phase diagrams of the ternary GMO/GME/water system have been constructed at 25, 40, and 55 degrees C. The results demonstrate that the increasing amount of GME favors the formation of the reversed phases, evidenced by the transformation of the lamellar and bicontinuous cubic liquid crystalline phases of the binary GMO/water system into reversed micellar or reversed hexagonal phases. For a particular liquid crystalline phase, increasing the GME content has no effect on the structural characteristics and hydration properties, thus suggesting ideal mixing with GMO. Investigations of dispersed nanoparticle samples using shear and a polymeric stabilizer, Pluronic F127, show the possibility of forming two different kinds of bicontinuous cubic phase nanoparticles by simply changing the GMO/GME ratio. Also NMR self-diffusion measurements confirm that the block copolymer, Pluronic F127, used to facilitate dispersion formation, is associated with nanoparticles and provides steric stabilization.

摘要

通过偏光显微镜、X射线衍射和核磁共振技术相结合的方法,研究了1-甘油单油酸酯(GMO)及其醚类似物1-甘油单油酸醚(GME)混合物的水相行为。构建了三元GMO/GME/水体系在25、40和55摄氏度下的三相图。结果表明,GME含量的增加有利于反相的形成,二元GMO/水体系的层状和双连续立方液晶相转变为反胶束或反六角相就证明了这一点。对于特定的液晶相,增加GME含量对结构特征和水合性质没有影响,因此表明与GMO能理想混合。使用剪切力和聚合物稳定剂普朗尼克F127对分散的纳米颗粒样品进行的研究表明,通过简单改变GMO/GME比例,有可能形成两种不同类型的双连续立方相纳米颗粒。此外,核磁共振自扩散测量证实,用于促进分散体形成的嵌段共聚物普朗尼克F127与纳米颗粒相关联,并提供空间稳定作用。

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