Composite Materials Based on Foam Polyurethane and Graphene Nanoplates Effectively Screening Electromagnetic Radiation

N. Memetov, A. Gerasimova, R. Stolyarov, A. Tkachev, A. Melezhik, N. Chapaksov, A. Osipkov, P. Mikhalev, A. Provatorov
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Abstract

Composite materials based on polyurethane foam and graphene nanoplates (GNP) for shielding from electromagnetic radiation in the frequency range from 2 to 12 GHz were made by impregnation. The use of phenol-formaldehyde resin (PFS) as a binder component promoted good adhesion of graphene to the polymer matrix and made it possible to obtain samples of composites with a high graphene concentration of ~ 50 wt %. An increase in the shielding efficiency of composites was found both with an increase in the frequency of electromagnetic radiation and with an increase in the concentration of GNP in them. The maximum shielding value was 75 dB at a frequency of 12 GHz and graphene concentration of 50 % by mass. It is concluded that the impregnation method proved to be promising for the manufacture of flexible and lightweight composite foams effective for shielding electromagnetic interference in the range from 2 to 12 GHz.
泡沫聚氨酯与石墨烯纳米板复合材料有效屏蔽电磁辐射
采用浸渍法制备了基于聚氨酯泡沫和石墨烯纳米片(GNP)的屏蔽2 ~ 12 GHz频率电磁辐射的复合材料。使用酚醛树脂(PFS)作为粘合剂组分,促进了石墨烯与聚合物基体的良好粘附,并使获得石墨烯浓度高达50%的复合材料样品成为可能。复合材料的屏蔽效率随着电磁辐射频率的增加和GNP浓度的增加而增加。在12 GHz频率和石墨烯质量浓度为50%时,最大屏蔽值为75 dB。结果表明,浸渍法制备柔性轻量化复合泡沫具有良好的屏蔽2 ~ 12 GHz电磁干扰性能。
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