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Enhancing effect of KMnO4 oxidation of carbon nanotubes network embedded in elastic polyurethane on overall electro-mechanical properties of composite

机译:嵌入弹性聚氨酯中的碳纳米管网络的KMnO4氧化对复合材料整体机电性能的增强作用

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摘要

The effect of functionalization of multiwalled carbon nanotubes using KMnO4 oxidation and oxygen plasma treatment on the electrical resistance of nanotube network/polyurethane composite subjected to elongation has been studied. The layered composite is prepared by taking a non-woven polyurethane filtering membrane which is made by electrospinning, enmeshing it with carbon nanotubes and melding them into one. The testing has shown tenfold composite resistance increase for the composite prepared from KMnO4 oxidized nanotubes in comparison to the network prepared from pristine nanotubes. The evaluated sensitivity of the treated composite in terms of the gauge factor increases linearly with strain from values around five at the start of deformation to nearly 45 at the strain 12%. This is a substantial increase, which put the composite prepared from KMnO4 oxidized nanotubes among ranges the materials and strain gauges with the highest sensitivity of electrical resistance measurement. © 2013 Elsevier Ltd.
机译:研究了采用KMnO4氧化和氧等离子体处理的多壁碳纳米管功能化对纳米管网络/聚氨酯复合材料拉伸后电阻的影响。所述层状复合材料是通过采用电纺丝制成的非织造聚氨酯滤膜,将其与碳纳米管啮合并融合成一体而制备的。测试表明,与由原始纳米管制备的网络相比,由KMnO4氧化的纳米管制备的复合材料的复合电阻增加了十倍。根据应变系数,处理后的复合材料的评估灵敏度随应变从变形开始时的大约5的值线性增加到应变12%时的接近45。这是一个巨大的增长,这使得由KMnO4氧化纳米管制备的复合材料成为电阻测量最高灵敏度的材料和应变仪。 ©2013爱思唯尔有限公司。

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