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Viscoelasticity of Single-Walled Carbon Nanotubes in Unsaturated Polyester Resin: Effects of Purity and Chirality Distribution

机译:单壁碳纳米管在不饱和聚酯树脂中的粘弹性:纯度和手性分布的影响

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摘要

The recent commercialization of single-walled carbon nanotubes (SWNT) with controlled chirality distributions has created new opportunities for producing SWNT materials with tailored electrical properties. However, there has 100 been relatively little research on understanding the effects of chirality distribution and SWNT purity on the two main determinants of nanocomposite mechanical properties: dispersion microstructure and nanotube-resin interactions. To establish a framework for comparing dispersion and interactions, we investigated the viscoelasticity of four South West Nano Technologies' SWNT products: a low and high purity semiconducting grade and a low and high purity metallic grade. Optical microscopy of the dispersions did not show any significant differences between the SWNT types. However, analysis of the dispersions' viscoelastic properties revealed the difference in dispersion microstructure and the relative strength of SWNT resin interactions. While all four products had a similar percolation threshold, the concentration of non-SWNT carbon impurities had a greater effect than chirality on viscoelastic properties and the relative strength of resin SWNT interactions.
机译:具有控制手性分布的单壁碳纳米管(SWNT)的最新商业化为生产具有定制电性能的SWNT材料创造了新的机会。然而,关于理解手性分布和单壁碳纳米管纯度对纳米复合材料力学性能的两个主要决定因素:分散体微结构和纳米管-树脂相互作用的影响的研究相对较少。为了建立一个比较色散和相互作用的框架,我们研究了西南纳米技术的四种SWNT产品的粘弹性:低和高纯度半导体等级以及低和高纯度金属等级。分散体的光学显微镜没有显示出SWNT类型之间的任何显着差异。然而,对分散体粘弹性的分析表明,分散体的微观结构和SWNT树脂相互作用的相对强度存在差异。尽管所有四种产品的渗滤阈值均相似,但非手性碳纳米管碳杂质的浓度对手弹性和树脂SWNT相互作用的相对强度的影响大于手性。

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