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The role of specific interactions on the dispersion and properties of carbon nanotube-polymer nanocomposites.

机译:特定相互作用对碳纳米管-聚合物纳米复合材料的分散性和性能的作用。

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摘要

This dissertation presents work that examines the role of specific chemical interactions in enhancing the dispersion of carbon nanotubes m a polymer matrix. Utilization of specific chemical interactions to induce/improve miscibility in polymer blends is well known. In this thesis, this approach is applied to carbon nanotubes polymer composites to enhance the dispersion of nanotubes in a copolymer of styrene and vinyl phenol with the idea that oxygenated functional groups on the nanotubes surface may potentially interact with the vinyl phenol groups on the polymer chain via hydrogen bonding.;The dispersion of single walled carbon nanotubes (SWNT) in the matrix of a copolymer of styrene and vinyl phenol containing 0, 10, 20, 40 and 100% vinyl phenol, is examined. The dispersion of the nanotubes was observed by optical microscopy. The dispersion of the SWNT in the polymer matrix is also quantified by optical microscopy and Raman spectroscopy. Raman spectroscopy is also used to investigate preferred interactions between the SWNTs and the copolymers via the shift in the characteristic Raman peak of the SWNTs in the composites. Optimal dispersion of the SWNT is observed in PSVPh with 20% vinyl phenol and oxidized nanotubes, which correlates with spectroscopic evidence that indicates that this system also incorporates the most interactions between SWNT and polymer matrix.;Polymer nanocomposite films containing 5 wt% single-walled carbon nanotubes (SWNT) or 5 wt% multi-walled carbon nanotubes (MWNT) with PSVPh copolymers were processed from dimethyl formamide solutions. The vinyl phenol mole ratio in the copolymers was 0, 10, 20, 30, and 40%. FTIR analysis indicates that the composites containing the copolymer with 20% vinyl phenol exhibit the maximum intermolecular interactions (hydrogen bonding) between the hydroxyl group of the vinyl phenol and the carbon nanotube functional groups. Tensile properties and electrical conductivity also are the highest in the samples containing the copolymer with 20% vinyl phenol. Thus, these results show that the optimization of the extent of intermolecular interactions between a polymer chain and a carbon nanotube results in an optimal increase in macroscopic properties.
机译:本论文提出了研究特定化学相互作用在增强碳纳米管在聚合物基质中的分散性中的作用的工作。利用特定的化学相互作用来诱导/改善聚合物共混物中的可混溶性是众所周知的。本文将这种方法应用于碳纳米管聚合物复合材料,以增强纳米管在苯乙烯和乙烯基苯酚共聚物中的分散性,并认为纳米管表面上的氧化官能团可能会与聚合物链上的乙烯基酚基团发生相互作用研究了单壁碳纳米管(SWNT)在苯乙烯和乙烯基苯酚的共聚物中的分散度,该共聚物含有0、10、20、40和100%乙烯基苯酚。通过光学显微镜观察纳米管的分散。还通过光学显微镜和拉曼光谱法定量SWNT在聚合物基质中的分散。拉曼光谱法还用于通过复合材料中SWNTs的特征拉曼峰的移动研究SWNTs与共聚物之间的优选相互作用。在含有20%乙烯基苯酚和氧化的纳米管的PSVPh中观察到SWNT的最佳分散性,这与光谱证据相关,表明该系统还结合了SWNT和聚合物基质之间的大多数相互作用。包含5 wt%单壁的聚合物纳米复合薄膜碳纳米管(SWNT)或含PSVPh共聚物的5 wt%多壁碳纳米管(MWNT)由二甲基甲酰胺溶液加工而成。共聚物中的乙烯基苯酚摩尔比为0、10、20、30和40%。 FTIR分析表明,含有具有20%乙烯基苯酚的共聚物的复合物在乙烯基苯酚的羟基和碳纳米管官能团之间表现出最大的分子间相互作用(氢键)。在包含具有20%乙烯基苯酚的共聚物的样品中,拉伸性能和电导率也最高。因此,这些结果表明,聚合物链和碳纳米管之间的分子间相互作用程度的优化导致宏观性能的最佳增加。

著录项

  • 作者

    Rasheed, Asif.;

  • 作者单位

    The University of Tennessee.;

  • 授予单位 The University of Tennessee.;
  • 学科 Chemistry Polymer.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 144 p.
  • 总页数 144
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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