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Metamaterial Behavior of Polymer Nanocomposites Based on Polypropylene/Multi-Walled Carbon Nanotubes Fabricated by Means of Ultrasound-Assisted Extrusion

机译:基于超声辅助挤出制造的聚丙烯/多壁碳纳米管的聚合物纳米复合材料的超材料行为

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Metamaterial behavior of polymer nanocomposites (NCs) based on isotactic polypropylene (iPP) and multi-walled carbon nanotubes (MWCNTs) was investigated based on the observation of a negative dielectric constant (ε′). It is demonstrated that as the dielectric constant switches from negative to positive, the plasma frequency (ω p ) depends strongly on the ultrasound-assisted fabrication method, as well as on the melt flow index of the iPP. NCs were fabricated using ultrasound-assisted extrusion methods with 10 wt % loadings of MWCNTs in iPPs with different melt flow indices (MFI). AC electrical conductivity (σ (AC) ) as a function of frequency was determined to complement the electrical classification of the NCs, which were previously designated as insulating (I), static-dissipative (SD), and conductive (C) materials. It was found that the SD and C materials can also be classified as metamaterials (M). This type of behavior emerges from the negative dielectric constant observed at low frequencies although, at certain frequencies, the dielectric constant becomes positive. Our method of fabrication allows for the preparation of metamaterials with tunable ω p . iPP pure samples show only positive dielectric constants. Electrical conductivity increases in all cases with the addition of MWCNTs with the largest increases observed for samples with the highest MFI. A relationship between MFI and the fabrication method, with respect to electrical properties, is reported.
机译:基于对位聚丙烯(IPP)和多壁碳纳米管(MWCNT)的观察,研究了基于负介电常数(ε')的聚合物纳米复合材料(NCS)的超材料行为。证明,随着介电常数从负到正,等离子体频率(ωp)在超声辅助制造方法上强烈取决于IPP的熔体流量指数。使用超声辅助挤出方法制造NCS,具有10wt%的IPPS中的MWCNT,具有不同的熔体流量指数(MFI)。作为频率的函数的AC电导率(σ(AC))以补充NCS的电气分类,其先前被指定为绝缘(I),静电耗散(SD)和导电(C)材料。发现SD和C材料也可以被分类为超材料(M)。这种类型的行为从低频观察到的负介电常数出现,尽管在某些频率下,介电常数变为正。我们的制造方法允许使用可调谐ωp制备超材料。 IPP纯样品仅显示正介质常数。对于具有最高MFI的样品,所有情况下,导电性在所有情况下都会增加所有情况。报道了MFI与制造方法之间的关系,关于电性能。

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