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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Polyacrylonitrile (PAN) based electrospun carbon nanofibers (ECNFs): Probing the synergistic effects of creep assisted stabilization and CNTs addition on graphitization and low dimensional electrical transport
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Polyacrylonitrile (PAN) based electrospun carbon nanofibers (ECNFs): Probing the synergistic effects of creep assisted stabilization and CNTs addition on graphitization and low dimensional electrical transport

机译:基于聚丙烯腈(锅)的电纺碳纳米纤维(ECNF):探讨蠕变辅助稳定化的协同效应和CNTs添加石墨化和低维电气运输

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摘要

We report on the fabrication of Polyacrylonitrile (PAN) based electrospun carbon nanofiber (ECNF) reinforced with multi-walled carbon nanotubes (MWCNTs) and characterization of the graphitic structure as well as electrical transport properties for four different ECNF systems. The different systems were obtained by the combination of two different ways of cyclization for pristine PAN and PAN with CNTs addition (PAN/CNT), typically by the application of constant creep stress and a constraint fixing. The addition of CNTs improved the graphitic structure of PAN. For the detailed analysis of different systems, carbonization was performed at 1700 degrees C and the graphitic structures were characterized. The CNTs improve the alignment of graphitic domains even for non-creep cyclized systems. The application of creep stress during cyclization results in highly aligned graphene planes. However, the creep stress cyclized PAN/CNT system exhibited a reduction in the alignment of graphene planes coming along with the observation of discontinuous, randomly orientated domains and a reduced conductivity. The electrical anisotropy increased for creep cyclized PAN and PAN/CNT compared to non-creep stress cyclized system. Our findings reveal that electrical transport in carbon nanofibers need to be considered as a cumulative effect of hopping and band transport along chemically and structurally inhomogeneous ECNFs. (C) 2020 Elsevier Ltd. All rights reserved.
机译:我们报道了多壁碳纳米管(MWCNTs)增强聚丙烯腈(PAN)基静电纺碳纳米纤维(ECNF)的制备,以及四种不同ECNF系统的石墨结构和电输运性能的表征。不同的体系是通过将原始PAN和PAN加碳纳米管(PAN/CNT)的两种不同环合方式组合而成的,通常是通过施加恒定的蠕变应力和约束固定。碳纳米管的加入改善了聚丙烯腈的石墨结构。为了对不同体系进行详细分析,在1700℃下进行碳化,并对石墨结构进行了表征。碳纳米管改善了石墨畴的排列,即使对于非蠕变环化系统也是如此。在环化过程中施加蠕变应力会导致石墨烯平面高度对齐。然而,蠕变应力环化的PAN/CNT系统表现出石墨烯平面的排列减少,同时观察到不连续、随机取向的畴和导电性降低。与非蠕变应力循环体系相比,蠕变循环PAN和PAN/CNT体系的电各向异性增加。我们的研究结果表明,碳纳米纤维中的电输运需要被视为沿着化学和结构不均匀ECNFs的跳跃和带输运的累积效应。(C) 2020爱思唯尔有限公司版权所有。

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