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首页> 外文期刊>Journal of Polymer Science, Part B. Polymer Physics >Fundamental study of crystallization, orientation, and electrical conductivity of electrospun PET/carbon nanotube nanofibers
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Fundamental study of crystallization, orientation, and electrical conductivity of electrospun PET/carbon nanotube nanofibers

机译:电纺PET /碳纳米管纳米纤维的结晶,取向和电导率的基础研究

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The morphology, structure, and properties of polyethylene terephthalate (PET)/Carbon Nanotubes (CNT) conductive nanoweb were studied in this article. Nanocomposite nanofibers were obtained through electrospinning of PET solutions in trifluoroacetic acid (TFA)/dichloromethane (DCM) containing different concentrations and types of CNTs. Electrical conductivity measurements on nanofiber mats showed an electrical percolation threshold around 2 wt % multi-wall carbon nanotubes (MWCNT). The morphological analysis results showed smoother nanofibers with less bead structures development when using a rotating drum collector especially at high concentrations of CNTs. From crystallographic measurements, a higher degree of crystallinity was observed with increasing CNT concentrations above electrical percolation. Spectroscopy results showed that both PET and CNT orientation increased with the level of alignment of the nanofibers when the nanotube concentration was below the electrical percolation threshold; while the orientation factor was reduced for aligned nanofibers with higher content in CNT. Considerable enhancement in mechanical properties, especially tensile modulus, was found in aligned nanofibers; at least six times higher than the modulus of random nanofibers at concentrations below percolation. The effect of alignment on the mechanical properties was less important at higher concentrations of CNTs, above the percolation threshold.
机译:本文研究了聚对苯二甲酸乙二醇酯(PET)/碳纳米管(CNT)导电纳米纤维网的形貌,结构和性能。通过将PET溶液在含有不同浓度和类型的CNT的三氟乙酸(TFA)/二氯甲烷(DCM)中进行电纺丝,获得了纳米复合纳米纤维。在纳米纤维垫上的电导率测量结果表明,电渗漏阈值约为2 wt%的多壁碳纳米管(MWCNT)。形态分析结果表明,使用旋转鼓式收集器时,尤其是在高浓度的CNT时,纳米纤维更光滑,珠子结构更少。从晶体学测量中,观察到随着电渗流增加CNT浓度,结晶度更高。光谱结果表明,当纳米管浓度低于电渗流阈值时,PET和CNT的取向均随纳米纤维的排列水平而增加;而对于碳纳米管中含量较高的取向纳米纤维,取向因子降低。在排列的纳米纤维中发现了机械性能的显着提高,特别是拉伸模量的提高。在低于渗滤的浓度下,它至少比无规纳米纤维的模量高六倍。在较高的CNTs浓度(高于渗滤阈值)时,对准对机械性能的影响不太重要。

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