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首页> 外文期刊>Journal of Applied Polymer Science >Preparation and properties of conductive polyaniline/poly-omega-aminoundecanoyle fibers
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Preparation and properties of conductive polyaniline/poly-omega-aminoundecanoyle fibers

机译:导电聚苯胺/聚ω-氨基十一烷纤维的制备与性能

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摘要

Historically, polyaniline (PANI) had been considered an intractable material, but it can be dissolved in some solvents. Therefore, it could be processed into films or fibers. A process of preparing a blend of conductive fibers of PANI/poly-omega-aminoun-decanoyle (PA11) is described in this paper. PANI in the emeraldine base was blended with PA11 in concentrated sulfuric acid (c-H,SO,) to form a spinning dope solution. This solution was used to spin conductive PANI/PA11 fibers by wet-spinning technology. As-spun fibers were obtained by spinning the dopes into coagulation bath water or diluted acid and drawn fibers were obtained by drawing the as-spun fibers in warm drawing bath water. A scanning electron microscope was employed to study the effect of the acid concentration in the coagulation bath on the microstructure of as-spun fibers. The results showed that the coagulating rate of as-spun fibers was reduced and the size of pore shrank with an increase in the acid concentration in the coagulation bath. The weight fraction of PANI in the dope solution also had an influence on the microstructure of as-spun fibers. The microstructure of as-spun fibers had an influence on the drawing process and on the mechanical properties of the drawn fibers. Meanwhile, the electrically conductive property of the drawn fibers with different percentage of PANI was measured. (C) 2002 Wiley Periodicals, Inc. [References: 23]
机译:从历史上看,聚苯胺(PANI)被认为是难处理的材料,但它可以溶解在某些溶剂中。因此,可以将其加工成薄膜或纤维。本文介绍了一种制备PANI /聚-ω-氨基十一烷(PA11)导电纤维共混物的方法。将翡翠碱中的PANI与PA11在浓硫酸(c-H,SO,)中混合,形成纺丝原液。该溶液用于通过湿纺技术纺制导电的PANI / PA11纤维。纺丝纤维是通过将纺丝液在凝固浴或稀酸中纺丝而制得的,而纺丝纤维是通过在温暖的纺丝浴水中拉伸而制得的。用扫描电子显微镜研究凝固浴中酸浓度对初纺纤维微观结构的影响。结果表明,随着凝固浴中酸浓度的增加,初生纤维的凝固速率降低,孔尺寸缩小。涂料溶液中PANI的重量分数也对初纺纤维的微观结构有影响。初纺纤维的微观结构对拉伸过程和拉伸纤维的机械性能都有影响。同时,测量了具有不同百分比的PANI的拉伸纤维的导电性能。 (C)2002 Wiley Periodicals,Inc. [参考:23]

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