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An asymmetric electrically conducting self-aligned graphene/polymer composite thin film for efficient electromagnetic interference shielding

机译:用于高效电磁干扰屏蔽的非对称导电自对准石墨烯/聚合物复合薄膜

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Here, we study the self-aligned asymmetric electrically conductive composite thin film prepared via casting of graphene oxide (GO)/poly (vinylidene-hexafluoropropylene) (PVDF-HFP) dispersion, followed by low temperature hydriodic acid reduction. The results showed that composite thin film revealed the high orientation of graphene sheets along the direction of film surface. However, graphene sheets are asymmetrically distributed along the film thickness direction in the composite film. Both sides of as prepared composite film showed different surface characteristics. The asymmetric surface properties of composite film induced distinction of surface resistivity response; top surface resistivity (21 Ohm) is ~ 4 times higher than bottom surface resistivity (5 Ohm). This asymmetric highly electrically conducting composite film revealed efficient electromagnetic interference (EMI) shielding effectiveness of ~ 30 dB. This study could be crucial for achieving aligned asymmetric composite thin film for high-performance EMI shielding radiation.
机译:在这里,我们研究通过流延氧化石墨烯(GO)/聚偏二氟乙烯-六氟丙烯(PVDF-HFP)分散体,然后进行低温氢碘酸还原制备的自对准不对称导电复合薄膜。结果表明,复合薄膜显示出石​​墨烯片沿薄膜表面方向的高取向性。然而,石墨烯片在复合膜中沿着膜厚度方向不对称地分布。制备的复合膜的两面都显示出不同的表面特性。复合膜的不对称表面特性引起了表面电阻率响应的区分;顶表面电阻率(21欧姆)是底表面电阻率(5欧姆)的〜4倍。这种不对称的高导电复合膜显示出约30 dB的有效电磁干扰(EMI)屏蔽效果。这项研究对于获得用于高性能EMI屏蔽辐射的对准不对称复合薄膜至关重要。

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