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Nanostructured Electrospun Hybrid Graphene/Polyacrylonitrile Yarns

机译:纳米结构电纺杂化石墨烯/聚丙烯腈纱线

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摘要

Novel nanostructured hybrid electrospun polyacrylonitrile (PAN) yarns with different graphene ratios were prepared using liquid crystal graphene oxide (LCGO) and PAN. It was found that the well-dispersed LCGO were oriented along the fiber axis in an electrified thin liquid jet during electrospinning. The graphene oxide sheets were well dispersed in the polar organic solvent, forming nematic liquid crystals upon increasing concentration. Twisted nanofibers were produced from aligned nanofibrous mats prepared by conventional electrospinning. It was found that the mechanical properties of the twisted nanofiber yarns increased even at very low LCGO loading. This research offers a new approach for the fabrication of continuous, strong, and uniform twisted nanofibers which could show promise in developing a novel carbon fiber precursor.
机译:使用液晶氧化石墨烯(LCGO)和PAN制备了具有不同石墨烯比例的新型纳米结构混合电纺聚丙烯腈(PAN)纱线。发现在静电纺丝过程中,分散良好的LCGO在带电稀薄液体射流中沿纤维轴取向。氧化石墨烯片很好地分散在极性有机溶剂中,随着浓度的增加形成向列型液晶。扭曲的纳米纤维由通过常规电纺丝制备的对齐的纳米纤维垫制成。发现即使在非常低的LCGO负载下,加捻的纳米纤维纱的机械性能也会提高。这项研究为连续,坚固,均匀的扭曲纳米纤维的制造提供了一种新方法,这可能在开发新型碳纤维前体方面显示出希望。

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