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Liquid Crystalline Copolymers Containing Sulfonic and Light-Responsive Groups: From Molecular Design to Conductivity

机译:含磺酸和光响应性基团的液晶共聚物:从分子设计到电导率

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摘要

In the search for novel smart multifunctional liquid crystalline materials, we report the synthesis, thermal and structural characterisation, and the conductivity, of a set of new block and statistical copolymers, containing light-responsive mesogenic groups (MeOAzB), polar sulfonic acids (AMPS), and methyl(methacrylate) groups (MMA). By using a cascade of reversible addition-fragmentation chain polymerisations, RAFT, we have tailored different side-chain polymeric structures by controlling monomer composition (MeOAzB/AMPS/MMA) and configuration. We have yielded simultaneous liquid crystalline behaviour and appreciable conductivity in polymers with low concentrations of polar acid groups, by the formation of smectic phases in narrow aggregates. The light-responsiveness of the polymers, via reversible -to- photoisomerization of azobenzene groups, and the local activation of conductivity at relatively low temperatures, opens the possibility to prepare polymer electrolytes for energy conversion and storage, whose conductivity could be controlled and optimised by external stimuli, including light irradiation.
机译:在寻找新型智能多功能液晶材料时,我们报告了一组新的嵌段共聚物和统计共聚物的合成,热和结构表征以及电导率,这些共聚物包含光响应性介晶基团(MeOAzB),极性磺酸(AMPS) )和(甲基丙烯酸甲酯)基(MMA)。通过使用级联的可逆加成-断裂链聚合,即RAFT,我们通过控制单体组成(MeOAzB / AMPS / MMA)和构型来定制不同的侧链聚合物结构。通过在窄聚集体中形成近晶相,我们在低浓度极性酸基团的聚合物中获得了同时的液晶行为和明显的电导率。通过偶氮苯基团的可逆-光致异构化以及在较低温度下电导率的局部活化,聚合物的光响应性为制备用于能量转换和存储的聚合物电解质提供了可能性,其电解质的电导率可通过控制和优化外部刺激,包括光照射。

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