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Electroless plate of polyaniline-silver composite layer on polyester fibers

机译:化学镀板polyaniline-silver复合层聚酯纤维

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摘要

Antistatic fibers or conductive fibers can be obtained from formation of a metal conductive layer, for example silver, on the surface of polymeric fibers through a redox reaction. However, in the process of fabricating silver-polymer conductive fibers, the binding force between silver and the polymeric fiber matrix is too weak and the poor weather resistance greatly affects the performance of the conductive fibers. This work aims to synthesize composite conductive layers of polyaniline (PANi)-silver coated on polyester fibers to prepare conductive polymeric fibers, in order to improve the combining ability between the conductive layers and the fiber matrix. The morphology, thermostability, mechanical properties, washing resistance and corrosion resistance of the resultant fibers obtained from different synthesis conditions were characterized. Batch experimental results showed that the concentration of the reagent and the reaction time could affect the resistance of the PANi-silver coated conductive fibers. The results also demonstrated that the PANi-silver composite conductive fibers have better properties than those of the silver-polymer conductive fibers.
机译:抗静电纤维和导电纤维获得一个金属导电的形成层,例如银,表面上的通过氧化还原反应聚合物纤维。然而,在制作的过程silver-polymer导电纤维,绑定银和聚合物纤维之间的力矩阵太弱和恶劣天气电阻的性能影响非常大导电纤维。聚苯胺的复合导电层(PANi)银涂层聚酯纤维制备导电聚合物纤维,以改善之间的结合能力导电层和纤维矩阵。形态、热稳定性、机械属性,耐洗、耐腐蚀从阻力的合成纤维不同的合成条件为特征。试剂的浓度和反应时间可能影响的阻力PANi-silver涂布导电纤维。也证明了PANi-silver复合导电纤维具有更好的性能那些silver-polymer导电纤维。

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