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首页> 外文期刊>Macromolecular Research >Electrical and mechanical properties of polyethylene/MWCNT composites produced by polymerization using Cp2ZrCl2 supported on MWCNTs
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Electrical and mechanical properties of polyethylene/MWCNT composites produced by polymerization using Cp2ZrCl2 supported on MWCNTs

机译:使用负载在MWCNT上的Cp2ZrCl2聚合制得的聚乙烯/ MWCNT复合材料的电气和机械性能

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摘要

Pristine multiwalled carbon nanotube (MWCNT)/polyethylene (PE) composites produced by in situ polymerization using a metallocene (Cp2ZrCl2) immobilized onto MWCNT are used for measurement of electrical, thermo- and dynamic mechanical properties. As the content of MWCNT in the composites increased, electrical resistivity decreased and heat distortion temperature (HDT) and storage modulus increased due to well-dispersed CNT strands in the PE matrix. The lowest average electrical surface and volume resistivities were 1.0x10(10) Omega and 4.1x10(9) Omega center dot cm, respectively and this result was supported by electrostatic force microscopy (EFM). In practical point of view, decrease of electrical resistivity of the composites is highly important in fabrication of antistatic polyolefin products including PEs in this study.
机译:通过使用固定在MWCNT上的茂金属(Cp2ZrCl2)原位聚合生产的原始多壁碳纳米管(MWCNT)/聚乙烯(PE)复合材料用于测量电,热和动态机械性能。随着复合材料中MWCNT含量的增加,由于CNT股线分散在PE基体中,电阻率降低,热变形温度(HDT)和储能模量提高。最低的平均电气表面电阻率和体积电阻率分别为1.0x10(10)Ω和4.1x10(9)Ω中心点cm,并且该结果得到静电力显微镜(EFM)的支持。实际上,在这项研究中,降低复合材料的电阻率对于制造包括PE在内的抗静电聚烯烃产品非常重要。

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