Vovchenko Ludmila, Matzui Ludmila, Oliynyk Viktor, Milovanov Yurii, Mamunya Yevgen, Volynets Nadezhda, Plyushch Artyom, Kuzhir Polina
Department of Physics, Taras Shevchenko National University of Kyiv, Volodymyrska str., 64/13, 01601 Kyiv, Ukraine.
Department of Radiophysics, Electronics, and Computer Systems, Taras Shevchenko National University of Kyiv, Volodymyrska str., 64/13, 01601 Kyiv, Ukraine.
Materials (Basel). 2020 Mar 3;13(5):1118. doi: 10.3390/ma13051118.
Polyethylene (PE) based composites with segregated carbon nanotubes (CNTs) network was successfully prepared by hot compressing of a mechanical mixture of PE and CNT powders. Through comparison with a composite comprising randomly distributed carbon nanotubes of the same concentration, we prove that namely the segregated CNT network is responsible for the excellent electrical properties, i.e. 10 S/m at 0.5-1% and 10 S/m at 6-12% of CNT. The investigation of the complex impedance in the frequency range 1 kHz-2 MHz shows that the sign of real part of the dielectric permittivity changes from positive to negative in electrically percolated composites indicating metal-like behavior of CNT segregated network. The obtained negative permittivity and AC conductivity behavior versus frequency for high CNT content (3%-12%) are described by the Drude model. At the same time, in contrast to reflective metals, high electromagnetic shielding efficiency of fabricated PE composites in the frequency range 40-60 GHz, i.e. close to 100% at 1 mm thick sample, was due to absorption coursed by multiple reflection on every PE-CNT segregated network interface followed by electromagnetic radiation absorbed in each isolated PE granule surrounded by conductive CNT shells.
通过对聚乙烯(PE)粉末和碳纳米管(CNT)粉末的机械混合物进行热压,成功制备了具有隔离碳纳米管网络的聚乙烯基复合材料。通过与包含相同浓度随机分布碳纳米管的复合材料进行比较,我们证明,正是隔离的碳纳米管网络导致了优异的电学性能,即在碳纳米管含量为0.5 - 1%时电导率为10 S/m,在碳纳米管含量为6 - 12%时电导率为10 S/m。在1 kHz - 2 MHz频率范围内对复阻抗的研究表明,在电渗滤复合材料中,介电常数实部的符号从正变为负,这表明碳纳米管隔离网络具有类似金属的行为。对于高碳纳米管含量(3% - 12%),所获得的负介电常数和交流电导率随频率的行为由德鲁德模型描述。同时,与反射金属不同,所制备的聚乙烯复合材料在40 - 60 GHz频率范围内具有高电磁屏蔽效率,即在1 mm厚样品时接近100%,这是由于在每个聚乙烯 - 碳纳米管隔离网络界面上多次反射引起的吸收以及在由导电碳纳米管壳包围的每个孤立聚乙烯颗粒中吸收电磁辐射所致。