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Solubility, length characterization, and cryo-TEM of pristine and functionalized single-walled carbon nanotubes in surfactant and superacid systems, with application to spinning SWNT fibers.

机译:原始和功能化的单壁碳纳米管在表面活性剂和超酸体系中的溶解度,长度表征和低温TEM,并应用于纺丝SWNT纤维。

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摘要

Single wall carbon nanotubes (SWNTs) have remarkable properties: the thermal conductivity of diamond, the electrical conductivity of copper, and mechanical properties greater than steel at a sixth of the weight. If these properties can be retained at the macroscale, SWNT fibers could be used in many high performance applications. The difficulty lies with dispersing SWNTs at high concentrations. Strong van der Waals attractive forces cause bundle formation, which limits SWNT self-assembly into highly aligned macro-structures. Using additives, SWNTs can be dispersed as individuals at low concentrations. Although spinning fibers is difficult to do with these dispersions, I have exploited their ability to disperse individual SWNT to develop an easy technique to measure the SWNT length distribution through the bulk measurements of viscosity or polarized absorbance in an external magnetic field. Determining length is important for fiber spinning, since longer nanotubes offer promise of stronger, more conductive fibers at the cost of higher viscosities and difficulty in dispersing. To produce neat SWNT fibers, we use superacids, which can disperse SWNTs at high concentrations, forming liquid crystalline phases that are valuable in forming highly-aligned SWNT fibers. I found that functionalization improves SWNT stabilization and solubility at lower concentrations, but at high concentrations, most of functional groups studied prevents the formation of highly aligned phases, which translated into poorly-aligned fibers. I found that chlorosulfonic acid is the most effective solvent, yielding high isotropic solubility and liquid crystallinity at high concentrations. Moreover, cryo-TEM shows that chlorosulfonic acid dissolves as individuals 500mum-long SWNTs and MWNTs.
机译:单壁碳纳米管(SWNT)具有非凡的性能:金刚石的导热性,铜的导电性和机械性能比重量轻六分之一的钢都要好。如果可以在宏观上保留这些特性,则SWNT纤维可以用于许多高性能应用中。困难在于以高浓度分散SWNT。强大的范德华吸引力会导致束形成,从而限制了SWNT自组装成高度对齐的宏观结构。使用添加剂,单壁碳纳米管可以低浓度分散为个人。尽管纺丝纤维很难用这些分散体进行处理,但是我已经利用它们分散单个SWNT的能力来开发一种简便的技术,可以通过在外部磁场中对粘度或极化吸收率进行整体测量来测量SWNT长度分布。确定长度对于纤维纺丝很重要,因为更长的纳米管有望以更高的粘度和分散困难为代价提供更坚固,更导电的纤维。为了生产纯净的SWNT纤维,我们使用了超强酸,可以将SWNTs分散在高浓度下,形成液晶相,这对于形成高度排列的SWNT纤维非常有价值。我发现官能化可在较低浓度下改善SWNT的稳定性和溶解性,但在高浓度下,大多数研究的官能团均会阻止形成高度排列的相,从而转化为排列不佳的纤维。我发现氯磺酸是最有效的溶剂,在高浓度下具有较高的各向同性溶解度和液晶性。而且,低温TEM显示氯磺酸作为个体溶解为500μm长的SWNT和MWNT。

著录项

  • 作者单位

    Rice University.;

  • 授予单位 Rice University.;
  • 学科 Engineering Chemical.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 263 p.
  • 总页数 263
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:37:12

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