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Study on PVA and PVA-Fiinetionafized MWNTs/PVA Composite Fibers

机译:PVA和PVA-FIINETION化MWNT / PVA复合纤维的研究

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Multi-walled carbon nanotubes(MWNTs) were functionalized with polyvinyl alcohol (PVA) through carbodiimide-activated esterification reactions. This ensured the dispersion of nanotubes in highly polar solvents to obtain high-quality solution, Because of covalent linkages between the modified carbon nanotubes and the hosting polymer matrix, it also allowed the intimate compatibility of the nanotubes and the PVA matrix to avoid any potential microscopic phase separation in the nanocomposites. Homogeneous solution of the PVA-functionalized carbon nanotubes and PVA in dimethyl sulfoxide (DMSO) had been prepared in the conditions of stirring and sonication, then extruded into fiber by gel spinning The mechanical properties of the composite fibers as well as the control PVA gel spun fibers were investigated. It was found that the mechanical properties of these nanocomposite fibers were significantly improved compared to the control PVA gel spun fibers. Scanning electron microscopy showed an apparent good wetting of the nanotubes in the PVA matrix. These results are supportive of good interfacial bonding between the functionalized carbon nanotubes and PVA.
机译:通过碳二亚胺活化的酯化反应用聚乙烯醇(PVA)官能化多壁碳纳米管(MWNT)。这确保了纳米管在高极性溶剂中的分散以获得高质量的溶液,因为修饰的碳纳米管和托管聚合物基质之间的共价键,它还允许纳米管和PVA基质的恰如其恰当地避免任何潜在的显微镜在纳米复合材料中相分离。在搅拌和超声处理条件下制备了PVA官能化碳纳米管和PVA在二甲基砜(DMSO)中的均匀溶液,然后通过凝胶挤出成复合纤维的机械性能以及对照PVA凝胶纺丝研究了纤维。结果发现,与对照PVA凝胶纺丝纤维相比,这些纳米复合纤维的机械性能显着改善。扫描电子显微镜表现出PVA基质中纳米管的明显良好润湿。这些结果支持官能化碳纳米管和PVA之间的良好界面键合。

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