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Nature‐Inspired Design and Application of Lipidic Lyotropic Liquid Crystals

溶致性 材料科学 两亲性 溶致液晶 结晶 纳米技术 两亲分子 纳米尺度 液晶 化学工程 液晶 化学物理 化学 聚合物 共聚物 复合材料 工程类 光电子学
作者
Raffaele Mezzenga,John M. Seddon,Calum J. Drummond,Ben J. Boyd,Gerd E. Schröder‐Turk,Laurent Sagalowicz
出处
期刊:Advanced Materials [Wiley]
卷期号:31 (35): e1900818-e1900818 被引量:218
标识
DOI:10.1002/adma.201900818
摘要

Amphiphilic lipids aggregate in aqueous solution into a variety of structural arrangements. Among the plethora of ordered structures that have been reported, many have also been observed in nature. In addition, due to their unique morphologies, the hydrophilic and hydrophobic domains, very high internal interfacial surface area, and the multitude of possible order-order transitions depending on environmental changes, very promising applications have been developed for these systems in recent years. These include crystallization in inverse bicontinuous cubic phases for membrane protein structure determination, generation of advanced materials, sustained release of bioactive molecules, and control of chemical reactions. The outstanding diverse functionalities of lyotropic liquid crystalline phases found in nature and industry are closely related to the topology, including how their nanoscopic domains are organized. This leads to notable examples of correlation between structure and macroscopic properties, which is itself central to the performance of materials in general. The physical origin of the formation of the known classes of lipidic lyotropic liquid crystalline phases, their structure, and their occurrence in nature are described, and their application in materials science and engineering, biology, medical, and pharmaceutical products, and food science and technology are exemplified.
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