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Properties of composites of fluorinated single walled carbon nanotubes and polyacrylonitrile

机译:氟化单壁碳纳米管与聚丙烯腈复合材料的性能

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摘要

Composites of polyacrylonitrile (PAN) and single walled carbon nanotubes (SWNTs) as well as fluorinated SWNTs produced by evaporation of suspensions of PAN and SWNTs while being subjected to sonication are characterized. Raman measurements of the PAN/ SWNT composites showed upward shifts of the tangential mode frequency of the SWNT compared to that of the pristine SWNT while in composites of the fluorinated SWNTs the tangential mode shifted down. These results are indicative of interaction between the PAN and the SWNT. Hardness measurements as a function of weight percent SWNTs indicated that composites made from the fluorinated SWNTs had larger tensile strengths than composites made from non functionalized SWNTs having the same number of carbon nanotubes. Composites of the non-functionalized SWNTs were highly conducting while those made of the fluorinated SWNTs were not.
机译:表征了聚丙烯腈(PAN)和单壁碳纳米管(SWNT)的复合材料,以及在进行超声处理时蒸发PAN和SWNT悬浮液而产生的氟化SWNT。 PAN / SWNT复合材料的拉曼测量结果显示,与原始SWNT相比,SWNT的切向模式频率向上移动,而在氟化SWNT的复合材料中,切向模式向下移动。这些结果表明了PAN与SWNT之间的相互作用。硬度测量值是单壁碳纳米管重量百分比的函数,它表明,由氟化单壁碳纳米管制成的复合材料比由具有相同碳纳米管数量的未官能化单壁碳纳米管制成的复合材料具有更大的拉伸强度。未官能化的SWNT的复合材料具有高导电性,而由氟化的SWNT制成的复合材料则不具有导电性。

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