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Mechanical Properties of Polyethylene Containing Defunctionalized Single Wall Carbon Nanotubes

机译:含有副官能化单壁碳纳米管的聚乙烯的力学性能

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To take advantage of the benefits of chemical functionalization and the desirable properties of unfunctionalized SWNTs, this research studies the effect of removing functional groups from SWNTs dispersed in a polymer matrix. Chemical functionalization of single wall carbon nanotubes (SWNTs) is a method for disrupting rope structure and adding reactive species to the nanotube to improve interfacial bonding and load transfer in composites, but changes to the nanotube hexagon structure caused by chemical modifications are expected to have a detrimental effect on the SWNTs' intrinsic mechanical properties. Thus, composites containing defunctionalized SWNTs and polyethylene are analyzed to evaluate the effect of functional group removal on the mechanical properties. The mechanical properties are measured using tensile tests. Issues of defects in the SWNT structure, polymer degradation, and changes in the fiber/matrix bonding as a result of functionalization removal are studied using Raman spectroscopy, thermogravimetric analysis, infrared spectroscopy, and dynamic mechanical analysis.
机译:为了利用化学官能化的益处和未官能化SWNT的理想性质,本研究研究了从分散在聚合物基质中分散的SWNT中除去官能团的效果。单壁碳纳米管(SWNT)的化学官能化是用于破坏绳索结构并将反应物质添加到纳米管中的方法,以改善复合材料中的界面粘合和负载转移,但预期由化学修饰引起的纳米管六边形结构的变化对SWNTS内在力学性能的不利影响。因此,分析含有官能化SWNT和聚乙烯的复合材料,以评估官能团去除对机械性能的影响。使用拉伸试验测量机械性能。使用拉曼光谱,热重分析,红外光谱和动态力学分析,研究了SWNT结构,聚合物降解和纤维/基质键合的纤维/基质键合的变化问题。

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