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Structure and Properties of Polypropylene-Wrapped Carbon Nanotubes Composite

机译:聚丙烯包裹碳纳米管复合材料的结构与性能

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摘要

By means of hi situ graft method, polypropylene (PP)-wrapped carbon nanotubes (CNTs) composite were prepared. Infrared spectroscopy (IR) results showed that there was covalent linkage between PP and CNTs via maleic anhydride (MAH) grafting. Owing to the uniform dispersion of CNTs and covalent adhesion between PP and CNTs, the tensile strength of PP-wrapped CNTs composite was higher than that for neat PP by 110% and a 74% increase as compared to the CNTs/PP (with the same CNTs content) composite. The further test showed a strong mechanical behavior with up to 113% increase in Young's modulus of the neat PP. Based on the uniform dispersion of CNTs, the electrical conductivity of PPwrapped CNTs composite increased sharply by up to seven orders of magnitude with 4 wt % CNT fillers. As a result, the volume resistivity was decreased with increase in the CNT content that could be governed in a percolation-like power law with a relatively low percolation threshold.
机译:采用原位接枝法制备了聚丙烯(PP)包裹的碳纳米管(CNTs)复合材料。红外光谱(IR)结果表明,通过马来酸酐(MAH)接枝,PP和CNT之间存在共价键。由于CNT的均匀分散以及PP和CNT之间的共价粘合性,与CNT / PP相比,PP包裹的CNTs复合材料的拉伸强度比纯PP高110%,并且增加了74%(相同碳纳米管含量)复合材料。进一步的测试显示出很强的机械性能,纯聚丙烯的杨氏模量提高了113%。基于CNT的均匀分散,使用4重量%的CNT填料,PP包裹的CNT复合材料的电导率急剧增加多达七个数量级。结果,随着CNT含量的增加,体积电阻率降低,这可以通过具有相对较低的渗透阈值的类似渗透的幂律来控制。

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