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Electrically Conductive Ultrafine Fibers of PVA-PEDOT/PSS and PVA-AgNPs by means of Electrospinning

机译:通过静电纺丝通过PVA-PEDOT / PSS和PVA-AGNP的导电超细纤维

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This research project produced two fabricated ultrafine conductive polymeric fibers. The first fiber was fabricated from a polymer and conductive polymer solution, and the second was fabricated from a polymer and metal nanoparticle/ nanocomposite. The resulting fibers were characterized and analyzed. For all fiber samples, the ultrafine polymeric fibers were fabricated using polyvinyl alcohol (PVA). The conductive polymer used in the first fiber sample was poly(3,4-ethylenedioxythiophene)/ polystyrene sulfonate (PEDOT/PSS). The conductive nanoparticles used in the second fiber sample were silver nanoparticles (AgNPs). The ultrafine conductive polymer fibers and the ultrafine conductive nanoparticle fibers were fabricated using an electrospining process. During the fabrication process of each fiber sample, different concentrations of either PEDOT/PSS, for fiber sample one, or AgNPs, for fiber sample two, were combined in PVA solution. Using optimal conditions, ultrafine fibers were fabricated at intervals of 5 min for the creation of random fibers, and intervals of 20 min for the creation of aligned fiber mats. The resulting fibers ranged from 0.1 μm to 0.2 μm in diameter. After characterization and analysis of the conductive ultrafine polymeric fibers, using either the PVA:PEDOT/PSS compound or the PVA:AgNPs compound, both samples produced greater conductive capacities with greater concentrations of solution. For the random fiber samples, the conductive capacity was sporadic. However, the ultrafine fiber mats (PVA:AgNPs) supported a capacity from 3.64 S/cm to 10.64 S/cm, and the PVA:PEDOT/PSS ultrafine fiber mats supported a capacity from 4.49 S/cm to 7.08 S/cm.
机译:该研究项目产生了两种制造的超环导电聚合物纤维。第一纤维由聚合物和导电聚合物溶液制成,第二种纤维由聚合物和金属纳米颗粒/纳米复合材料制成第二个纤维。表征和分析所得纤维。对于所有纤维样品,使用聚乙烯醇(PVA)制造超细聚合物纤维。在第一纤维样品中使用的导电聚合物是聚(3,4-亚乙二氧基噻吩)/聚苯乙烯磺酸盐(PEDOT / PS)。在第二纤维样品中使用的导电纳米颗粒是银纳米颗粒(AgNP)。使用电动杆工艺制造超细导电聚合物纤维和超细导电纳米颗粒纤维。在每个纤维样品的制造过程中,在PVA溶液中组合在PVA溶液中组合在每个纤维样品的每个纤维样品的纤维样品/ PSS或纤维样品中的PSS或AGNPS的PEDOT / PSS。使用最佳条件,以5分钟的间隔制造超细纤维,以产生随机纤维,并且为12分钟的间隔产生对准的纤维垫。所得纤维的直径为0.1μm至0.2μm。使用PVA:PVA:PEDOT / PSS化合物或PVA:AgNPS化合物的表征和分析后,两种样品具有更大的溶液浓度的溶液产生更大的导电能力。对于随机纤维样品,导电容量是散摩卡。然而,超细纤维垫(PVA:AGNPS)支撑了3.64 s / cm至10.64 s / cm的容量,PVA:PETOT / PSS超细纤维垫支撑在4.49 s / cm至7.08 s / cm的容量。

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