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Ion-Conductive Nanostructured Polymer Films Formed by Photopolymerization of Lyotropic Columnar Liquid-Crystalline Monomers, Composed of a Zwitterionic Compound and a Protic Ionic Liquid

机译:通过倍二碱柱状液晶单体光聚合形成的离子导电纳米结构聚合物膜,由两性离子化合物和质子离子液体组成

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摘要

Here, we report on a new family of columnar nanostructured polymer films forming protic nanochannels that exhibit good ionic conductivities in the order of 10−4–10−3 S cm-1 at ambient temperature. These polymer films were obtained by the in situ photopolymerization of lyotropic columnar liquid crystals, consisting of a polymerizable taper-shaped zwitterionic compound and a protic ionic liquid (imidazolium bis(trifluoromethylsulfonyl)imide), in the presence of 15 wt% water. The composition of the protic ionic liquid in the mixture was changed from 40 to 60 mol%. The ionic conductivities were measured by an alternating current impedance method. The ionic conductivity increased with the increase of the protic ionic liquid. The conductivities of columnar nanostructured polymer films were about 2–3 orders of magnitude higher than those of amorphous polymer films prepared by photopolymerization of the corresponding monomers in an isotropic liquid state. The formation of nanochannels in the polymer matrices significantly enhanced the ion conduction. The present two-component lyotropic liquid-crystalline self-assembly followed by photopolymerization is a promising approach to the development of high ion-conductive polymer membranes.
机译:在这里,我们上形成质子纳米通道柱状纳米结构化的聚合物膜,在的10-4-10-3小号-1在环境温度下的顺序显示出良好的离子电导率的一个新的家庭情况。这些聚合物膜是由溶致柱状液晶的原位光聚合得到的,其由可聚合的锥形两性离子化合物和质子离子液体(咪唑鎓双(三氟甲基磺酰)亚胺)的,在15重量%的水的存在。在混合物中的质子型离子液体的组合物,从40〜60摩尔%变化。的离子电导率是由一个交变电流阻抗法测定。的离子导电性与质子型离子液体的增加而增加。柱状纳米结构化的聚合物膜的电导率为约2-3个数量级比由相应的单体进行光聚合以各向同性液体的状态制备的无定形聚合物膜的高。在聚合物基质的纳米通道的形成显著增强离子导电。本双组分易溶液晶自组装,然后通过光聚合是一种有前途的方法来高离子导电聚合物膜的开发。

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