首页> 外文期刊>Journal of nanoscience and nanotechnology >Structures and Properties of Polyacrylonitrile/Graphene Composite Nanofiber Yarns Prepared by Multi-Needle Electrospinning Device with an Auxiliary Electrode
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Structures and Properties of Polyacrylonitrile/Graphene Composite Nanofiber Yarns Prepared by Multi-Needle Electrospinning Device with an Auxiliary Electrode

机译:用辅助电极的多针静电纺丝装置制备的聚丙烯腈/石墨烯复合纳米纤维纱线的结构和性质

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In this paper, polyacrylonitrile/graphene composite nanofiber filaments were manufactured continuously by a homemade eight-needle electrospinning device with an auxiliary electrode. The polyacrylonitrile/graphene composite nanofiber yarns were obtained continuously by plying and twisting the composite nanofiber filaments. The structures and properties of the composite nanofiber filaments with different GP mass fractions and yarns were investigated. The results demonstrated that the maximum alignment degree of the composite nanofibers along the filament axis could reach 74.3% with 1%, and the alignment degree decreased with increasing graphene mass fraction. The diameters of the composite nanofibers were considerably smaller than those of the pure polyacrylonitrile nanofiber, and the minimum diameter was 156 nm for 1%. The conductivity of the composite nanofiber filaments was significantly enhanced by seven orders of magnitude compared with that of the pure polyacrylonitrile nanofiber filament, and the maximum value was 3.73x10(-7) S/cm for 1.5%. Due to graphene agglomeration, the conductivity decreased when the mass fraction was more than 1.5%. The different number of filaments and twists were examined in detail to improve the poor mechanical properties of the nanofiber filaments. With an increase in twists, the breaking stress and strain increased initially and later decreased, and the maximum breaking stress and strain were 16.54 MPa and 26.42%, respectively. This study demonstrates the possibility of continuously and stably manufacturing polyacrylonitrile/graphene composite nanofiber yarns.
机译:在本文中,通过具有辅助电极的自制八针静电纺丝装置连续制造聚丙烯腈/石墨烯复合纳米纤维长丝。通过Playing和扭转复合纳米纤维长丝连续获得聚丙烯腈/石墨烯复合纳米纤维纱线。研究了具有不同GP质量级分和纱线的复合纳米纤维长丝的结构和性质。结果证明,复合纳米纤维沿着长丝轴的最大对准程度可达到74.3%,1%,并随着石墨烯质量级分的增加降低而降低。复合纳米纤维的直径显着小于纯聚丙烯腈纳米纤维的直径,最小直径为156nm,1%。与纯聚丙烯腈纳米纤维长丝相比,复合纳米纤维长丝的电导率显着提高了7个级,最大值为3.73×10(-7)S / cm 1.5%。由于石墨烯附聚,当质量级分大于1.5%时,电导率降低。详细研究了不同数量的长丝和曲折,以改善纳米纤维长丝的差的机械性能。随着曲折的增加,最初和之后的断裂应力和应变增加,并且分别最大断裂应力和菌株分别为16.54MPa和26.42%。该研究表明了连续且稳定地制造聚丙烯腈/石墨烯复合纳米纤维纱线的可能性。

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