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Highly dispersible aligned multiwall carbon nanotube bundles and their optimum length for electrically conductive applications

机译:高度分散的取向多壁碳纳米管束及其在导电应用中的最佳长度

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Highly dispersible aligned multiwall carbon nanotube (MWCNT) bundles were synthesized, and then, the nanotube-based nanocomposite and ink were prepared. It was found that the aligned MWCNTs were quite easily dispersed in the matrix of low density polyethylene (LDPE) by an extrusion process, whereas the entangled nanotubes were not dispersed at all while passing through the extruder. As a result, the sheet resistance of aligned MWCNTs (2 wt%)/LDPE composite plate (10~(3.8) Ω/□) was found to be much lower than that of the composite prepared using entangled nanotubes (10~9 Ω/□). It was further found that the optimum length of aligned MWCNTs for electrically conductive application is varied with the fabrication process and its parameters. The optimum length of aligned nanotubes was found to be ~50 μm when the MWCNT/LDPE composite was prepared using a twin extruder. In contrast, the longer nanotubes showed better conductivity when the sonication was used to fabricate composite and ink.
机译:合成了高度分散的取向多壁碳纳米管(MWCNT)束,然后制备了纳米管基纳米复合材料和油墨。发现通过挤出工艺,取向的MWCNT非常容易分散在低密度聚乙烯(LDPE)的基质中,而缠结的纳米管在通过挤出机时根本不分散。结果发现,取向的MWCNTs(2 wt%)/ LDPE复合板的薄层电阻(10〜(3.8)Ω/□)比使用缠结纳米管制备的复合材料的薄层电阻(10〜9Ω/□)低得多。 □)。进一步发现,用于导电应用的取向MWCNT的最佳长度随制造工艺及其参数而变化。当使用双挤出机制备MWCNT / LDPE复合材料时,发现取向纳米管的最佳长度为〜50μm。相反,当使用超声处理制造复合材料和油墨时,较长的纳米管显示出更好的导电性。

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