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Melt-Quench Formed Smectic Phase in iPP/CNT Nanocomposites and its Re-Crystallization

机译:iPP / CNT纳米复合材料中的熔融-猝灭形成的近晶相及其再结晶

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The largest commercial application of carbon nanotubes (CNT) are their polymer nanocomposites (PNCs). This motivates detailed studies of the interactions between CNTs and polymers and the ways the CNTs influence the crystallization behavior and structure of PNCs. We have chosen isotactic polypropylene (iPP) as one of the best model systems because of its ability to form a smectic liquid crystal phase. We studied iPP/CNT nanocomposites with CNT concentrations ranging from 0.01 to 5% per weight. We prepared films by compression molding and quenching in a mixture of isopropyl alcohol and dry ice. Some of the formed smectic liquid crystalline (LC) phase of iPP/CNT PNCs persisted to temperatures higher than the last melting temperature for iPP crystals. By means of differential scanning calorimetry we corroborated the existence of the LC phase in the nanocomposites and studied the impact of multi-walled carbon nanotubes on its melting and re-crystallization. We used a polarizing optical microscopy to reconfirm our DSC data.
机译:碳纳米管(CNT)的最大商业应用是其聚合物纳米复合材料(PNC)。这促使人们对碳纳米管与聚合物之间的相互作用以及碳纳米管影响PNC的结晶行为和结构的方式进行详细研究。我们选择等规聚丙烯(iPP)作为最佳模型系统之一,因为它具有形成近晶液晶相的能力。我们研究了iPP / CNT纳米复合材料,其CNT浓度范围为每重量0.01至5%。我们通过压模并在异丙醇和干冰的混合物中淬火来制备薄膜。 iPP / CNT PNC的某些近晶液晶(LC)相持续存在的温度高于iPP晶体的最后熔化温度。通过差示扫描量热法,我们证实了纳米复合材料中LC相的存在,并研究了多壁碳纳米管对其熔融和重结晶的影响。我们使用偏振光学显微镜重新确认了我们的DSC数据。

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