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Synthesis of non-destructive amido group functionalized multi-walled carbon nanotubes and their application in antistatic and thermal conductive polyetherimide matrix nanocomposites

机译:非破坏性氨基团官能化多壁碳纳米管的合成及其在抗静电和导热聚醚酰亚胺基质纳米复合材料中的应用

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摘要

Thermal conductive and antistatic polyetherimide (PEI) nanocomposites were fabricated by encapsulating non-destructive amido group functionalized multi-walled carbon nanotubes (MWCNTs) into the PEI matrix. Briefly, nearly half of acyl chloride groups in poly (acryloyl chloride) reacted with sodium azide and formed acyl azide groups, which could conjunct with MWCNTs via non-destruction nitrenes addition reaction. The remaining acyl chloride groups in poly (acryloyl chloride) hydrolyzed into carboxyl groups, therefore COOH-rich MWCNTs (MWCNTs@azide polyacrylic acid) were synthesized without serious damage to the MWCNTs. Then, MWCNTs@azide polyacrylic acid were then reacted with p-Phenylene diamine (PPD) and transformed to amido group functionalized MWCNTs (MWCNTs@PPD). MWCNTs@PPD could participate into the in situ polymerization of PEI matrix, where the conjunction between bisphenol A dianhydride and amido groups on MWCNTs@PPD guaranteed the strong covalent bonding at the PEI/MWCNTs interface, which directly avoided the aggregation of MWCNTs. Owing to the non-destructive modification of MWCNTs and tight matrix/filler interface, the volume electric and thermal conductivity of as-prepared nanocomposites was up to 6.4x10(-8) S/cm (1.0wt%, MWCNTs@PPD) and 0.43W/(mK) (4.0wt%, MWCNTs@PPD), respectively. Copyright (c) 2016 John Wiley & Sons, Ltd.
机译:通过将非破坏性的酰胺基团官能化的多壁碳纳米管(MWCNT)包封在PEI基质中,制备导热和抗静电聚醚酰亚胺(PEI)纳米复合物。简而言之,聚(丙烯酰氯)中的近一半的酰氯基团与叠氮化钠和形成酰基叠氮基团,其可以通过非销毁Nitrenes加成反应与MWCNT混合。将聚(丙烯酰氯)中的剩余酰氯基团水解成羧基,因此合成了富含COOH的MWCNT(MWCNTS @叠氮化物聚丙烯酸),而不会严重损伤MWCNT。然后,然后将MWCNT @叠氮化物聚丙烯酸与对亚苯基二胺(PPD)反应并转化为官能团官能化MWCNT(MWCNTS @ PPD)。 MWCNTS @PPD可以参与PEI基质的原位聚合,其中双酚A二酐和酰胺基团的结合MWCNTS @ PPD在PEI / MWCNTS界面上保证了强烈的共价键合,该界面直接避免了MWCNT的聚集。由于MWCNT和密封矩阵/填充界面的非破坏性修饰,所制备的纳米复合材料的体积电和导热率高达6.4×10(-8)S / cm(1.0wt%,mwcnts @ ppd)和0.43 w /(m <粗体> k )(4.0wt%,mwcnts @ ppd)。版权所有(c)2016 John Wiley&Sons,Ltd。

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