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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Gel-spun carbon nanotubes/polyacrylonitrile composite fibers. Part II: Stabilization reaction kinetics and effect of gas environment
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Gel-spun carbon nanotubes/polyacrylonitrile composite fibers. Part II: Stabilization reaction kinetics and effect of gas environment

机译:凝胶纺丝碳纳米管/聚丙烯腈复合纤维。第二部分:稳定化反应动力学及气体环境影响

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Gel-spun polyacrylonitrile (PAN) and carbon nanotube (CNT) composite fibers have been stabilized using various processing conditions to study the kinetics of stabilization reactions. Differential scanning calorimetry, infrared spectroscopy, wide angle X-ray diffraction and thermo-gravimetric analysis studies suggest that individual stabilization reactions can be separated at different stabilization stages when inert and oxidative environments are used in sequence. Among various stabilization reactions, it was found that the cross-linking has the highest activation energy, followed by cyclization and oxidation. The oxidation preferentially occurs with the cyclized structure and the shrinkage during stabilization is affected by the gaseous environment. The addition of CNTs reduces both entropic and reaction shrinkages, and improves the maximum tension that a fiber can bear during stabilization in both inert and oxidative environments.
机译:胶纺聚丙烯腈(PAN)和碳纳米管(CNT)复合纤维已使用各种加工条件进行了稳定化,以研究稳定化反应的动力学。差示扫描量热法,红外光谱,广角X射线衍射和热重分析研究表明,当依次使用惰性和氧化环境时,可以在不同的稳定阶段分离各个稳定反应。在各种稳定化反应中,发现交联具有最高的活化能,然后是环化和氧化。氧化优先通过环化结构发生,并且稳定期间的收缩受到气态环境的影响。碳纳米管的添加减少了熵收缩和反应收缩,并提高了纤维在惰性和氧化环境中稳定过程中所能承受的最大张力。

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