首页> 外文期刊>Journal of thermal analysis and calorimetry >Thermochemical stabilization and analysis of continuously electrospun nanofibers Carbon nanotube-loaded polyacrylonitrile nanofibers for high performance carbon nanofiber mass production
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Thermochemical stabilization and analysis of continuously electrospun nanofibers Carbon nanotube-loaded polyacrylonitrile nanofibers for high performance carbon nanofiber mass production

机译:连续电纺纳米纤维的热化学稳定性和分析载有碳纳米管的聚丙烯腈纳米纤维可用于批量生产高性能碳纳米纤维

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摘要

Carbon nanotube (CNT)-loaded and neat polyacrylonitrile nanofibers were produced by a needleless continuous electrospinning method as carbon nanofiber precursors. The details of the stabilization, which is a crucial issue during carbon fiber production, were investigated as these nanofibers are especially sensitive to degradation. In order to determine the optimal parameters, the nanofibers were stabilized at different temperatures. The stabilized samples were analyzed by Fourier-transform infrared spectroscopic and differential scanning calorimetric (DSC) measurements and by the determination of the color changes. The chemical changes during the stabilization (the formation of the so-called ladder-polymer) can be followed by infrared spectrometry, while the conversion can be monitored by DSC. The formation of the ladder-polymer occurs according to the Gaussian distribution function, where the temperature of the stabilization is the statistical parameter, which was also determined. In the case of CNT-loaded samples, the range of stabilization temperature was wider, which provides better controllability of the process. Based on the established models, an appropriate multi-step heat-treatment program could be determined, which led to completely stabilized nanofibers, suitable for carbonization.
机译:通过无针连续电纺丝法制备了负载有碳纳米管(CNT)的纯聚丙烯腈纳米纤维作为碳纳米纤维前体。由于这些纳米纤维对降解特别敏感,因此对稳定化的细节进行了研究,这是碳纤维生产过程中的关键问题。为了确定最佳参数,将纳米纤维稳定在不同的温度下。通过傅立叶变换红外光谱和差示扫描量热法(DSC)测量并通过确定颜色变化来分析稳定的样品。稳定化过程中的化学变化(所谓的梯形聚合物的形成)可以通过红外光谱法进行跟踪,而转化率可以通过DSC进行监控。梯形聚合物的形成是根据高斯分布函数进行的,其中稳定温度是统计参数,也已确定。对于负载CNT的样品,稳定温度的范围更宽,从而提供了更好的过程可控性。基于已建立的模型,可以确定适当的多步热处理程序,从而产生适合碳化的完全稳定的纳米纤维。

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