Nano-Device Laboratory, Materials Science and Engineering Program, Bourns College of Engineering, University of California-Riverside, Riverside, California 92521, USA.
ACS Nano. 2013 Jun 25;7(6):5114-21. doi: 10.1021/nn400726g. Epub 2013 May 20.
Carboxylic functionalization (-COOH groups) of carbon nanotubes is known to improve their dispersion properties and increase the electrical conductivity of carbon-nanotube-polymer nanocomposites. We have studied experimentally the effects of this type of functionalization on the thermal conductivity of the nanocomposites. It was found that while even small quantities of carbon nanotubes (1 wt %) can increase the electrical conductivity, a larger loading fraction (3 wt %) is required to enhance the thermal conductivity of nanocomposites. Functionalized multi-wall carbon nanotubes performed the best as filler material leading to a simultaneous improvement of the electrical and thermal properties of the composites. Functionalization of the single-wall carbon nanotubes reduced the thermal conductivity enhancement. The observed trends were explained by the fact that while surface functionalization increases the coupling between carbon nanotube and polymer matrix, it also leads to formation of defects, which impede the acoustic phonon transport in the single-wall carbon nanotubes. The obtained results are important for applications of carbon nanotubes and graphene flakes as fillers for improving thermal, electrical and mechanical properties of composites.
众所周知,碳纳米管的羧基功能化(-COOH 基团)可以改善其分散性能,并提高碳纳米管-聚合物纳米复合材料的电导率。我们已经通过实验研究了这种功能化对纳米复合材料导热性能的影响。结果发现,虽然少量的碳纳米管(1wt%)就能提高电导率,但要提高纳米复合材料的导热率,需要更大的填充分数(3wt%)。作为填充材料,功能化多壁碳纳米管表现最佳,可同时提高复合材料的电性能和热性能。单壁碳纳米管的功能化会降低热导率的增强。观察到的趋势可以通过以下事实来解释:虽然表面功能化增加了碳纳米管与聚合物基体之间的耦合,但它也会导致缺陷的形成,从而阻碍了单壁碳纳米管中声子的输运。这些结果对于碳纳米管和石墨烯片作为填充材料在提高复合材料的热、电和机械性能方面的应用非常重要。