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A new finding for carbon nanotubes in polymer blends: Reduction of nanotube breakage during melt mixing

机译:聚合物共混物中碳纳米管的新发现:熔体混合过程中的纳米管破裂的降低

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High aspect ratio multi-walled carbon nanotubes (MWCNTs) having an average length of 4.23 m and an average diameter of 9.5 nm have been melt mixed with immiscible polystyrene/poly(methyl methacrylate) (PS/PMMA) blends in mass ratio 80:20 and 20:80, respectively. The carbon nanotubes (CNTs) reside in the PMMA phase, and length analysis after melt mixing indicates that when PMMA was the minor phase (20 wt%), little or no CNT breaking occurred during mixing. On the other hand, when PMMA was the major phase (80 wt%), the average length of the CNTs was reduced to 2.78 m, approximately 70% of their original length. Mixing the CNTs with neat PMMA under the same mixing conditions resulted in a reduction in CNT length to 1.02 m, only 24% of the original length. Electrical conductivity results show that less CNT breakage leads to a reduction by a factor of 2.5 in the electrical percolation threshold in the 20:80 PMMA/PS blend polymer, which is much larger than a simple volume fraction argument would suggest. This article shows for the first time that relatively long MWCNTs break less in polymer blends than in the neat polymer with concomitant reductions in percolation threshold.
机译:平均长度为4.23μm的高纵横比和平均直径为9.5nm的多壁碳纳米管(mwcnts)已熔融与不混溶的聚苯乙烯/聚(甲基丙烯酸甲酯)(ps / pmma)的质量比80:20混合和20:80分别。碳纳米管(CNT)位于PMMA相中,并且熔融混合后的长度分析表明当PMMA是小相(20wt%)时,在混合过程中发生很少或没有CNT断裂。另一方面,当PMMA是主要相(80wt%)时,CNT的平均长度降至2.78米,其原始长度的约70%。在相同的混合条件下将CNT与整齐的PMMA混合导致CNT长度的降低至1.02μm,仅为原始长度的24%。电导率结果表明,在20:80的PMMA / PS共混聚合物中,在电渗滤阈值中,较少的CNT破裂导致在电渗滤阈值下降了2.5因子,这远远大于简单的体积分数参数。本文显示了第一次在聚合物共混物中比较长的MWCNTs比在整齐的聚合物中较少,其在渗透阈值中具有伴随的聚合物。

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