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Amphitropic liquid crystal phases from polyhydroxy sugar surfactants: Fundamental studies

机译:多羟基糖表面活性剂的两性液晶相:基础研究

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The self-assembly phenomena on a special class of poly-hydroxy sugar surfactant have been studied extensively. This class of material is classified as amphitropic liquid crystals since they exhibit both thermotropic and lyotropic liquid crystalline properties. Hence the potential applications of these non-ionic surfactants are more versatile than those from the conventional lyotropic liquid crystals including those from thermotropic phases, but the latters are yet to be realized. Unfortunately, due to the lack of interest (or even awareness), fundamental studies in thermotropic glycolipids are scanty to support application development, and any tangible progress is often mired by the complexity of the sugar stereochemistry. However, some applications may be pursued from these materials by taking the advantage of the sugar chirality and the tilted structure of the lipid organization which implies ferroelectric behavior. Here, we present our studies on the stereochemical diversity of the sugar units in glycosides that form the thermotropic/lyotropic phases. The structure to property relationship compares different chain designs and other popular polyhydroxy compounds, such as monooleins and alkylpolyglucosides. Different structural properties of these glycosides are discussed with respect to their self-assembly organization and potential applications, such as delivery systems and membrane mimetic study.
机译:在特殊类别的聚羟基糖表面活性剂上的自组装现象已得到广泛研究。由于这类材料同时具有热致和液溶液晶特性,因此被归为两亲型液晶。因此,这些非离子表面活性剂的潜在应用比常规的溶致液晶的那些,包括来自热致变相的非离子表面活性剂的潜在用途更广泛,但后者尚未实现。不幸的是,由于缺乏兴趣(甚至意识),热致糖脂的基础研究不足以支持应用开发,并且糖立体化学的复杂性常常使任何明显的进展都受阻。然而,通过利用糖的手性和脂质组织的倾斜结构的优势,可以从这些材料中寻求一些应用,这暗示着铁电行为。在这里,我们介绍我们对形成热致/溶致相的糖苷中糖单元的立体化学多样性的研究。结构与性质的关系比较了不同的链设计和其他流行的多羟基化合物,例如单油精和烷基聚葡糖苷。讨论了这些糖苷的自组装组织和潜在应用(如递送系统和膜模拟研究)的不同结构特性。

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