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干热致变糖脂自组装:综述

Dry Thermotropic Glycolipid Self-Assembly:A Review.

作者信息

Hashim Rauzah, Zahid N Idayu, Velayutham T S, Aripin Nurul Fadhilah Kamalul, Ogawa Shigesaburo, Sugimura Akihiko

机构信息

Centre for Fundamental and Frontier Sciences in Nanostructure Self-Assembly, Department of Chemistry, Faculty of Science, University of Malaya.

Low Dimensional Materials Research Center, Department of Physics, Faculty of Science, University of Malaya.

出版信息

J Oleo Sci. 2018 Jun 1;67(6):651-668. doi: 10.5650/jos.ess17261. Epub 2018 May 15.

Abstract

Also recognized as carbohydrate liquid crystals, glycolipids are amphiphiles whose basic unit comprises of a sugar group attached to an alkyl chain. Glycolipids are amphitropic, which means these materials form liquid crystal self-assemblies when dry (thermotropic) as well as when dissolved in solvents (lyotropic/surfactants) such as water. Many glycolipids are also naturally derived since these can be found in cell membranes. Their membrane and surfactant functions are largely understood through their lyotropic properties. While glycolipids are expected to play major roles as eco-friendly surfactants in the global surfactant market, their usefulness as thermotropic liquid crystal material is, to date, unknown, due to relatively lack of research performed and data reported in the literature. Understandably since glycolipids are hygroscopic with many hydroxy groups, removing the last trace water is very challenging. In recent time, with careful lyophilization and more consistent characterization technique, some researchers have attempted serious studies into "dry" or anhydrous glycolipids. Motivated by possible developments of novel thermotropic applications, some results from these studies also provide surprising new understanding to support conventional wisdom of the lyotropic systems. Here we review the dry state of glycosides, a family of glycolipids whose sugar headgroup is linked to the lipid chain via a glycosidic oxygen linker. The structure property relationship of both linear and anhydrous Guerbet glycosides will be examined. In particular, how the variation of sugar stereochemistry (e.g. anomer vs. epimer), the chain length and chain branching affect the formation of thermotropic liquid crystals phases, which not only located under equilibrium but also far from equilibrium conditions (glassy phase) are scrutinized. The dry glycolipid assembly has been subjected to electric and magnetic fields and the results show interesting behaviors including a possible transient current generation.

摘要

糖脂也被认为是碳水化合物液晶,是两亲分子,其基本单元由连接在烷基链上的糖基组成。糖脂是两性的,这意味着这些材料在干燥时(热致性)以及溶解在水等溶剂中时(溶致性/表面活性剂)会形成液晶自组装体。许多糖脂也是天然衍生的,因为它们可以在细胞膜中找到。它们的膜和表面活性剂功能很大程度上是通过其溶致性质来理解的。虽然预计糖脂在全球表面活性剂市场中将作为环保型表面活性剂发挥主要作用,但由于文献中相对缺乏相关研究和数据报道,其作为热致液晶材料的用途至今仍不明确。可以理解的是,由于糖脂含有许多羟基且具有吸湿性,去除最后微量的水非常具有挑战性。近年来,通过仔细的冻干和更一致的表征技术,一些研究人员对“干燥”或无水糖脂进行了深入研究。受新型热致应用可能发展的推动,这些研究的一些结果也为支持溶致体系的传统观念提供了令人惊讶的新认识。在这里,我们综述糖苷(一类糖脂,其糖头基通过糖苷氧连接基与脂质链相连)的干燥状态。将研究线性和无水格尔伯特糖苷的结构性质关系。特别地,将仔细研究糖立体化学的变化(例如异头物与差向异构体)、链长和链分支如何影响热致液晶相的形成,这些相不仅处于平衡状态,而且远离平衡条件(玻璃相)。对干燥的糖脂组装体施加了电场和磁场,结果显示出有趣的行为,包括可能产生瞬态电流。

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