首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Proton conductive cationic nanoporous polymers based on smectic liquid crystal hydrogen-bonded heterodimers
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Proton conductive cationic nanoporous polymers based on smectic liquid crystal hydrogen-bonded heterodimers

机译:基于近晶液晶氢键合的异二聚体的质子导电阳离子纳米多孔聚合物

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摘要

The fabrication of a cationic nanoporous smectic liquid crystal network (LCN) based on hydrogen bonded heterodimers is presented. The method relies on a supramolecular complex made from a pyridyl bearing reactive mesogen hydrogen bonded to a non-reactive benzoic acid template. Upon addition of a crosslinker, a smectic liquid crystalline phase is obtained that can be fixed by photopolymerization. It was found that the lamellar structure was maintained after template removal when 25 wt% or more cross-linker was used, yielding a nanoporous LCN. After H3PO4 immobilization in the pores of the LCN, a cationic 2D nanoporous polymer is obtained showing high and anisotropic anhydrous proton conductivity.
机译:介绍了基于氢键键合的异二聚体的阳离子纳米多孔偏晶晶体网络(LCN)的制造。 该方法依赖于由粘合到非反应性苯甲酸模板的吡啶基反应性氢气制成的超分子复合物。 加入交联剂后,获得近晶液晶相,可以通过光聚合来固定。 发现当使用25wt%或更多的交联剂时,在模板去除后保持层状结构,得到纳米多孔LCN。 在H3PO4固定在LCN的孔中,获得阳离子2D纳米多孔聚合物,显示出高和各向异性的无水质子电导率。

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