首页> 外文会议>ACS Symposium on Photoinitiated Polymerization, Aug, 2001, Chicago, Illinois >Photopolymerization Kinetics of Nanostructured Polymers Templated by Lyotropic Liquid Crystals
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Photopolymerization Kinetics of Nanostructured Polymers Templated by Lyotropic Liquid Crystals

机译:溶致液晶为模板的纳米结构聚合物的光聚合动力学

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Nanostructured materials have been the focus of much attention due to their applicability in nanocomposites, separations media, drug delivery devices, and many other applications requiring a nanometer size scale. Recently, using lyotropic liquid crystalline (LLC) phases to template their unique nanostructure onto organic polymers has been proposed. This work details the photopolymerization of acrylamide in various phases of LLC systems. The photopolymerization kinetics are correlated to monomer organization for different phases at a variety of concentrations and temperatures. The photopolymerization kinetics of acrylamide in the LLC phases depend strongly on the LLC morphology. The polymerization rates are significantly faster in compositions of surfactant resulting in a hexagonal geometry as the acrylamide monomer is preferentially oriented. These results indicate that acrylamide is strongly associated with the LLC interface and the surfactant. Photopolymerization of these templated systems results in structure retention of the parent LLC phase.
机译:纳米结构材料由于其在纳米复合材料,分离介质,药物输送装置以及许多其他需要纳米级尺寸的应用中的适用性而成为人们关注的焦点。最近,已提出使用溶致液晶(LLC)相将其独特的纳米结构模板化到有机聚合物上。这项工作详细介绍了LLC系统各个阶段中丙烯酰胺的光聚合。在各种浓度和温度下,光聚合动力学与不同相的单体组织相关。丙烯酰胺在LLC相中的光聚合动力学在很大程度上取决于LLC的形态。在表面活性剂的组成中,聚合速率明显更快,因为丙烯酰胺单体被优先取向,导致六边形的几何形状。这些结果表明,丙烯酰胺与LLC界面和表面活性剂密切相关。这些模板化系统的光聚合导致母体LLC相的结构保留。

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