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Development of a novel preparation method for conductive PES ultrafine fibers with self-formed thin PES/CNTs composite layer by vapor treatment

机译:具有蒸汽形成自形成薄PES / CNTs复合层的导电PES超细纤维的新型制备方法的开发

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Conductive electrospun fibers have attracted widespread interest in the field of electromagnetics. However, the problem of how to effectively improve the electrical conduction of electrospun fibers has still not been adequately addressed. In this study, a new, simple and effective method was introduced to significantly improve the conductive properties of fibers. PES/PVA fibers with previous addition of 20 wt% PVA were chosen as a matrix due to the large parallel porous structure. The carbon nanotubes (CNTs) were first absorbed by the PES/PVA fibers, and then a thin polymer/CNTs composite layer was self-formed on the surface of the porous fibers by vapor treatment. Most importantly, a CNTs network structure was also formed in this vapor process, which easily gave the porous fibers a significant enhancement in conductivity with only a small amount of CNTs. Electrical conduction tests showed that the conduction of the fibers increased with increasing CNT content, and attained the maximum value when the amount of CNTs was around 7 wt%. The adsorption time and the DMSO vapor treatment time were optimized to obtain the best thin polymer/CNT composite layers. The surface microstructure of the composite layer was observed using scanning electron microscopy (SEM) and TGA. The results showed that this novel, powerful method could potentially be used to prepare novel types of conductive polymer fibers.
机译:导电电纺纤维在电磁学领域引起了广泛的兴趣。但是,如何有效地改善电纺纤维的导电性的问题仍未得到充分解决。在这项研究中,引入了一种新的,简单而有效的方法来显着改善纤维的导电性能。由于大的平行多孔结构,选择了预先添加了20 wt%PVA的PES / PVA纤维作为基质。碳纳米管(CNT)首先被PES / PVA纤维吸收,然后通过蒸汽处理在多孔纤维的表面上自形成一个薄的聚合物/ CNTs复合层。最重要的是,在该气相工艺中还形成了CNTs网络结构,这很容易使多孔纤维的导电性显着提高,而CNT的数量却很少。导电测试表明,纤维的导电随着CNT含量的增加而增加,并且当CNT的含量为约7wt%时达到最大值。优化了吸附时间和DMSO蒸气处理时间,以获得最佳的聚合物/ CNT复合材料薄层。使用扫描电子显微镜(SEM)和TGA观察复合层的表面微观结构。结果表明,这种新颖,有效的方法可潜在地用于制备新型导电聚合物纤维。

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