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Synthesis of conductive nanocomposites by selective in situ polymerization of pyrrole within the lamellar microdomains of a block copolymer

机译:通过在嵌段共聚物的层状微区内进行吡咯的选择性原位聚合合成导电纳米复合材料

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Electrically conductive nanocomposites were prepared by a selective in situ polymerization of pyrrole within the lamellae ionomeric microdomains of sulfonated poly(styrene-b-(ethylene-alt-propylene)), SEP, diblock copolymers. A conductivity of 10(-3)-10(-1) S/cm was achieved parallel to the film surface for PPy concentrations from 5 to 11 wt% PPy. Although the microstructure of the block copolymer was not purposefully aligned, the conductivity was anisotropic, varying 1-2 orders of magnitude parallel and normal to the plane of the composite films. The in situ polymerization of pyrrole in the SPS microphase did not disrupt the texture of the block copolymer microstructure, though the interphase between the polystyrene and rubber lamellae became more diffuse. Incorporation of PPy also improved the modulus of the block copolymer above the T-g of the ionomer microdomains. [References: 20]
机译:通过吡咯在磺化聚(苯乙烯-b-(乙烯-alt-丙烯)),SEP,二嵌段共聚物的片层离聚物微域内的选择性原位聚合制备导电纳米复合材料。当PPy浓度为5至11 wt%PPy时,与薄膜表面平行的电导率为10(-3)-10(-1)S / cm。尽管嵌段共聚物的微观结构没有故意对准,但电导率是各向异性的,平行且垂直于复合膜的平面变化1-2个数量级。吡咯在SPS微相中的原位聚合不会破坏嵌段共聚物的微结构,尽管聚苯乙烯和橡胶薄片之间的相变更加分散。 PPy的引入还改善了嵌段共聚物在离聚物微区的T-g之上的模量。 [参考:20]

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