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首页> 外文期刊>Journal of Colloid and Interface Science >Preparation of liquid crystal nanocapsules by polymerization of oil-in-water emulsion monomer droplets
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Preparation of liquid crystal nanocapsules by polymerization of oil-in-water emulsion monomer droplets

机译:用油 - 水乳液单体液滴聚合制备液晶纳米胶囊

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Liquid crystal nanocapsules (LC-Nanocapsules) were prepared by miniemulsion polymerization of the oil-in-water emulsion monomer droplets dissolving the liquid crystal (LC) compounds. In order to establish the preparation conditions of LC-Nanocapsules exhibiting the liquid crystallinity, the effects of the capsule wall-forming monomers and the crosslinking agent concentration on the capsule structure were investigated in detail. The monodisperse colloidal products covered with the robust polymer shell wall was successfully prepared by the polymerization of the emulsion monomer droplets obtained through the phase inversion temperature emulsification technique using the amphiphilic block copolymer as an emulsifier. The endothermic peak was observed at the nematic-isotropic phase transition temperature (T-NI) of the LC in the differential scanning calorimetry diagram of LC-Nanocapsules. The bright- and dark-field images of the dried thin films of LC-Nanocapsules spread on a glass substrate were found to appear repeatedly by the temperature change below and above T-NI by polarized optical microscopic analysis. These results revealed that the LC-Nanocapsules with a complete engulfing morphology were successfully formed by the spontaneous coacervation phenomena between the crosslinked polymer and the LC with a progression of the polymerization, as theoretically predicted from the viewpoint of the spreading coefficients. (C) 2019 Elsevier Inc. All rights reserved.
机译:液晶纳米胶囊(LC-纳米胶囊)是由油包水乳液的微乳液聚合制备的单体液滴中溶解所述液晶(LC)的化合物。为了建立LC-纳米胶囊的表现出液晶性的制剂的条件下,胶囊壁形成用的单体和在胶囊结构中的交联剂浓度的影响进行了详细的调查。覆盖有坚固的聚合物壳壁的单分散胶体的产品已成功通过使用两亲性嵌段共聚物作为乳化剂相转变温度乳化技术得到的乳液的单体液滴聚合制备。在向列相 - 各向同性相转变温度在LC-纳米胶囊的差示扫描量热图中的LC的(T-NI)观察到的吸热峰。发现在玻璃基板上LC-纳米胶囊传播的干燥薄膜的明视和暗场图像由低于和高于T-NI的温度变化通过偏振光光学显微镜分析重复出现。这些结果表明,LC-纳米胶囊具有完整的吞没形态成功地被交联的聚合物,并用聚合的进展的LC,作为理论上从扩展系数的观点考虑,预测之间的自发凝聚现象形成。 (c)2019 Elsevier Inc.保留所有权利。

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