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Conducting pseudo graft copolymers based on polyaniline and carbonyl-functionalized polysiloxanes: Preparation and properties

机译:基于聚苯胺和羰基官能化聚硅氧烷的导电接枝共聚物的制备和性能

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摘要

The comb-type polysiloxanes with carbonyl-functionalized side-chains, P(Si-g-MMA), were designed and prepared by direct hydrosilylation reaction between poly(methylhydrosiloxane) (PMHS) with active hydrogen atoms and methyl methacrylate (MMA) with unsaturated bond and carbonyl-function group. By further grafting polyaniline chains to P(Si-g-MMA) via hydrogen bonding interaction, the sea urchin-like P(Si-g-MMA)-PAn microspheres were obtained and characterized by GPC, FTIR, ~1H NMR, TGA and SEM. The different morphology of the P(Si-g-MMA)-PAn microspheres can be modulated by simply adjusting the volume ratio of THF to H_2O in the mixed solvent during the preparation. The as-prepared P(Si-g-MMA)-PAn can form self-supporting films by solution casting from dichloroacetic acid (DCAA) with conductivity as high as 20 S/cm and available mechanical properties, which would find many applications in various fields.
机译:通过具有活性氢原子的聚(甲基氢硅氧烷)(PMHS)和具有不饱和键的甲基丙烯酸甲酯(MMA)之间的直接硅氢化反应,设计并制备了具有羰基官能化侧链的梳型聚硅氧烷P(Si-g-MMA)键和羰基官能团。通过氢键相互作用将聚苯胺链进一步接枝到P(Si-g-MMA)上,获得了海胆状P(Si-g-MMA)-PAn微球,并通过GPC,FTIR,〜1H NMR,TGA和扫描电镜通过简单地调节制备过程中混合溶剂中THF与H_2O的体积比,可以调节P(Si-g-MMA)-PAn微球的不同形态。所制备的P(Si-g-MMA)-PAn可通过由导电率高达20 S / cm和可用机械性能的二氯乙酸(DCAA)溶液浇铸而形成自支撑膜。领域。

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