The School of Polymer, Textile and Fiber Engineering, Georgia Institute of Technology, Atlanta, Georgia 30332, USA.
ACS Appl Mater Interfaces. 2010 May;2(5):1331-42. doi: 10.1021/am100155x.
Reinforcement efficiency of different types of carbon nanotubes (CNT) have been compared in polyacrylonitrile (PAN) films at nanotube loadings of 5, 10, and 20 wt %. The films are characterized for mechanical, dynamic-mechanical, and thermomechanical properties, electrical conductivity, as well as structural analysis. PAN/CNT composite films exhibit electrical conductivities up to 5500 S/m. Based on X-ray diffraction, PAN crystallinity was shown to increase with the presence of CNT. PAN-CNT interactions in the various composites were compared using conventional activation energy analysis. The strongest physical interaction between PAN and CNT was found in samples containing single-wall carbon nanotubes (SWNT). CNT surface area was also measured using nitrogen gas adsorption and correlated with PAN-CNT composite film mechanical properties, in an effort to better understand PAN-CNT interactions for different CNT morphologies. Solvent behavior of various composite films has also been investigated. The presence of CNT was found to improve PAN solvent resistance.
不同类型的碳纳米管(CNT)在聚丙烯腈(PAN)薄膜中的增强效率已在 CNT 负载量为 5、10 和 20wt%的情况下进行了比较。对薄膜的机械性能、动态机械性能和热机械性能、电导率以及结构分析进行了表征。PAN/CNT 复合薄膜的电导率高达 5500 S/m。基于 X 射线衍射,表明随着 CNT 的存在,PAN 的结晶度增加。使用常规活化能分析比较了各种复合材料中 PAN-CNT 的相互作用。在含有单壁碳纳米管(SWNT)的样品中发现了 PAN 和 CNT 之间最强的物理相互作用。还使用氮气吸附法测量了 CNT 的表面积,并将其与 PAN-CNT 复合薄膜的机械性能相关联,以更好地了解不同 CNT 形态下的 PAN-CNT 相互作用。还研究了各种复合薄膜的溶剂行为。发现 CNT 的存在提高了 PAN 的耐溶剂性。