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Macroscopic CNT fibres inducing non-epitaxial nucleation and orientation of semicrystalline polymers

机译:宏观CNT纤维诱导半结晶聚合物的非外延成核和取向

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摘要

In the presence of macroscopic fibres of carbon nanotubes (CNT), various semicrystalline polymers are shown to present accelerated crystallisation through the formation of a transcrystalline (TC) layer perpendicular to the fibre axis. From differential scanning calorimetry, polarized optical microscopy and X-ray diffraction we establish this to be due to much faster nucleation rates at the fibre surface. The formation of a TC layers is demonstrated for polyvinyldene fluoride, isotactic polypropylene and poly(lactic acid) in spite of the large differences in their chemistry and structure unit cells, suggesting that epitaxy in terms of lattice type or size matching is not a prerequisite. For the three polymers as well as poly(ether ether ketone), the TC layer is identically oriented with the chain axis in the lamella parallel to the CNTs, as observed by wide and small angle X-ray scattering. These results point to polymer chain orientation at the point of adsorption and the formation of a mesomorphic layer as possible steps in the fast nucleation of oriented lamella, with wetting of the CNT fibre surface by the molten semi-crystalline polymer a key condition for heterogeneous nucleation to take place.
机译:在存在碳纳米管(CNT)的宏观纤维的情况下,各种半结晶聚合物显示出通过形成垂直于纤维轴的跨晶(TC)层而加速结晶。通过差示扫描量热法,偏振光学显微镜和X射线衍射,我们确定这是由于纤维表面成核速率快得多。尽管聚偏二氟乙烯,全同立构聚丙烯和聚乳酸在化学和结构晶胞上存在巨大差异,但仍证明了TC层的形成,这表明外延不是晶格类型或尺寸匹配的前提。对于三种聚合物以及聚(醚醚酮),TC层的取向均与平行于CNT的薄片中的链轴平行,如通过广角和小角度X射线散射所观察到的。这些结果表明在吸附点的聚合物链取向和介晶层的形成是定向薄片快速成核的可能步骤,而熔融半结晶聚合物润湿CNT纤维表面是异相成核的关键条件发生。

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