首页> 外文会议>Symposium on Advances in Liquid Crystalline Materials and Technologies, Nov 26-29, 2001, Boston, Massachusetts, U.S.A. >Photopolymerization of Lyotropic Liquid Crystalline Systems: A New Route to Nanostructured Materials
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Photopolymerization of Lyotropic Liquid Crystalline Systems: A New Route to Nanostructured Materials

机译:溶致液晶体系的光聚合:纳米结构材料的新途径

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摘要

In recent years, a considerable amount of research has been dedicated to synthesizing highly ordered nanostructured materials. One way to achieve this is through templated polymerizations. A novel route to fabricating such materials is through the use of lyotropic liquid crystals (LLCs) that possess highly ordered nanostructures. However, LLC phases lack the necessary physical robustness. So, templating LLC phase morphology onto other materials such as organic polymers would give a nanostructure retained as part of a robust polymeric matrix. This study focuses on the photopolymerization behavior and structure retention of hydroxyethyl acrylate (HEA) / dodecyltrimethyl ammonium bromide (DTAB) / water system in a select LC phase. The results suggest that the polymerization behavior is heavily dependent on the type of LLC structure. Specifically, lamellar aggregates polymerize faster than either cubic or isotropic morphologies due to diffusional limitations on the growing polymer chain. Monomer segregation also plays a role in determining the polymerization rates. Results also indicate that the original LLC order of these systems is largely retained upon photopolymerization although some LLC phases do change upon cure. This order would be useful in applications such as ultrafiltration membranes, separation media, and drug delivery systems.
机译:近年来,大量研究致力于合成高度有序的纳米结构材料。实现此目的的一种方法是通过模板聚合。制造此类材料的一种新颖途径是通过使用具有高度有序的纳米结构的溶致液晶(LLC)。但是,LLC相缺乏必要的物理鲁棒性。因此,将LLC的相形态模板化到其他材料(例如有机聚合物)上,将得到保留为坚固的聚合物基质一部分的纳米结构。这项研究的重点是在选定的LC相中丙烯酸羟乙酯(HEA)/十二烷基三甲基溴化铵(DTAB)/水体系的光聚合行为和结构保留。结果表明,聚合行为在很大程度上取决于LLC结构的类型。具体地,由于对增长的聚合物链的扩散限制,层状聚集体的聚合比立方或各向同性的形态更快。单体离析在确定聚合速率中也起作用。结果还表明,尽管某些LLC相确实会在固化后发生变化,但这些体系的原始LLC顺序在光聚合后仍会保留。该顺序在诸如超滤膜,分离介质和药物递送系统的应用中将是有用的。

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