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High resolution transmission electron microscopy study on polyacrylonitrile/carbon nanotube based carbon fibers and the effect of structure development on the thermal and electrical conductivities

机译:聚丙烯腈/碳纳米管基碳纤维的高分辨率透射电子显微镜研究以及结构发展对热导率和电导率的影响

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摘要

Polyacrylonitrile (PAN) and PAN/carbon nanotube (CNT) based carbon fibers at various CNT content have been processed and their structural development was investigated using high resolution transmission electron microscope (HR-TEM). In CNT containing carbon fibers, the CNTs act as templating agents for the graphitic carbon structure development in their vicinity at the carbonization temperature of 1450 degrees C, which is far below the graphitization temperature of PAN based carbon fiber (>2200 degrees C). The addition of 1 wt% CNT in the gel spun precursor fiber results in carbon fibers with a 68% higher thermal conductivity when compared to the control gel spun PAN based carbon fiber, and a 103% and 146% increase over commercially available IM7 and T300 carbon fibers, respectively. The electrical conductivity of the gel spun PAN/CNT based carbon fibers also showed improvement over the investigated commercially available carbon fibers. Increases in thermal and electrical conductivities are attributed to the formation of the highly ordered graphitic structure observed in the HR-TEM images. Direct observation of the graphitic structure, along with improved transport properties in the PAN/CNT based carbon fiber suggest new applications for these materials.
机译:聚丙烯腈(PAN)和基于PAN /碳纳米管(CNT)的各种CNT含量的碳纤维都已经过加工,并使用高分辨率透射电子显微镜(HR-TEM)研究了它们的结构发展。在含碳纤维的碳纳米管中,碳纳米管在1450摄氏度的碳化温度下(其远低于PAN基碳纤维的石墨化温度(> 2200摄氏度)),充当其附近石墨碳结构发展的模板剂。与对照凝胶纺PAN基碳纤维相比,在凝胶纺前体纤维中添加1 wt%CNT可使碳纤维的导热率提高68%,比市售IM7和T300分别提高103%和146%碳纤维。凝胶纺PAN / CNT基碳纤维的电导率也显示出比所研究的市售碳纤维的改善。热导率和电导率的增加归因于在HR-TEM图像中观察到的高度有序的石墨结构的形成。直接观察石墨结构,以及在基于PAN / CNT的碳纤维中改善的传输性能,为这些材料提出了新的应用。

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