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Fabrication of Metallized Electrospun Copper Nanofiber Webs

机译:金属化电纺铜纳米纤维网的制造

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The conductive metallic nanofibers were prepared by using a combined technology of electrospinning and metallization. The electrospun polyurethane and poly(vinyl alcohol) (PVA) nanofibers are metallized with different thicknesses of metal (Cu, Ni) layer via a metallization. The thickness of the metallic layer, which is ranging from 50 nm to 200 nm, was controlled. The resultant metallized nanofibers are characterized using field emission scanning electron microscopy (FE-SEM), wide angle X-ray diffraction (WAXD), and thermogravimetric analysis (TGA). FE-SEM micrographs demonstrate that the nano-scaled metallic layers are well deposited onto the nanofibers. TGA result indicates that thermal stability of the metallized nanofibers was enhanced due to the barrier effects of the metallic thin layer. WAXD data also confirm that the metallic layers are well deposited onto the nanofibers. Remarkably, the fibrous morphologies were satisfactorily conserved after removal of the nanofiber template by heat treatment at ca. 400°C for 24 hr., suggesting the successful deposition of metal layer onto the nanofiber template, and thereby resulted in the formation of metallic nanofibers and nanotubes depending on the diameter of electrospun nanofibers and the thickness of the deposited metallic layers in the conductive metallic nanofibers. In addition, it was observed that the metallized nanofibers exhibit higher conductive properties depending on the thickness of the deposited metallic layers.
机译:通过使用静电纺丝和金属化的组合技术制备导电金属纳米纤维。电纺聚氨酯和聚(乙烯醇)(PVA)纳米纤维通过金属化具有不同厚度的金属(Cu,Ni)层金属化。控制金属层的厚度,其范围为50nm至200nm。所得金属化纳米纤维的特征在于使用场发射扫描电子显微镜(Fe-SEM),广角X射线衍射(WAXD)和热重分析(TGA)。 Fe-SEM显微照片表明纳米缩放的金属层很好地沉积在纳米纤维上。 TGA结果表明,由于金属薄层的阻隔效应,增强了金属化纳米纤维的热稳定性。 WAXD数据还证实金属层沉积在纳米纤维上。显着地,在通过在CA的热处理除去纳米纤维模板后,纤维形态令人满意地保守。 24小时400°C,表明将金属层成功沉积到纳米纤维模板上,从而导致金属纳米纤维和纳米管的形成,这取决于电纺纳米纤维的直径和导电金属中的沉积金属层的厚度纳米纤维。另外,观察到金属化纳米纤维取决于沉积的金属层的厚度表现出更高的导电性。

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