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首页> 外文期刊>Bulletin of the Korean Chemical Society >Physicochemical and Electrical Characterization of Polyaniline Induced by Crosslinking, Stretching, and Doping
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Physicochemical and Electrical Characterization of Polyaniline Induced by Crosslinking, Stretching, and Doping

机译:交联,拉伸和掺杂诱导的聚苯胺的理化和电学表征

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The polyaniline films with various insoluble parts are fabricated. The oxidation state (1-y) of these polyaniline is 0.53 and 0.54, respectively. To control the interchain and intrachain interaction of the polymer, the polyaniline films are stretched with appropriate ratio. The insoluble part of polyaniline synthesized at room temperature (low molecular weight) is 12%-76% and that of polyaniline synthesized at 0 `IC (intermediate molecular weight) is 65%-89%. The low molecular weight polyaniline films with various drawing ratios have amorphous structure. In the intermediate weight polyaniline films, the crystallinity of films increases with drawing ratio as well as insoluble part. The difference of the insoluble part affects electrical conductivity which is increased dramatically with draw ratio. In particular, the higher insoluble part caused greater increase in electrical conductivity.
机译:制备具有各种不溶部分的聚苯胺膜。这些聚苯胺的氧化态(1-y)分别为0.53和0.54。为了控制聚合物的链间和链内相互作用,以适当的比例拉伸聚苯胺膜。在室温(低分子量)下合成的聚苯胺的不溶部分为12%-76%,在0`IC(中等分子量)下合成的聚苯胺的不溶部分为65%-89%。具有各种拉伸比的低分子量聚苯胺膜具有无定形结构。在中等重量的聚苯胺薄膜中,薄膜的结晶度随拉伸比和不溶部分的增加而增加。不溶部分的差异影响电导率,电导率随拉伸比而急剧增加。特别地,较高的不溶部分导致电导率的较大增加。

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