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Alignment of graphene sheets in wax composites for electromagnetic interference shielding improvement

机译:石墨复合材料中石墨烯片的排列以改善电磁干扰屏蔽

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摘要

Rapid advancements in carbon-based fillers have enabled a new and more promising platform in the development of electromagnetic attenuation composites. Alignment of fillers in composites with specific structures and morphologies has been widely pursued to achieve high performance based on taking advantage of unique filler characteristics. In this work, few-layer graphene (FLG), obtained from direct exfoliation of graphite, was fabricated into paraffin wax to prepare FLG/wax composites and investigate their electromagnetic interference (EMI) shielding performance. The as-exfoliated FLG/wax samples have shown much improved EMI performance compared to the commercial graphite/wax ones. For further improvement of EMI shielding performance, split-press-merge approaches were applied to align the FLG fillers to achieve anisotropic characteristics in the plane perpendicular to the pressing direction. Much enhanced EMI shielding performance coupled with an improvement in absorption and reflection was observed in the post-alignment FLG/wax composites. An average interparticle distance model associated with improved electrically conducting interconnection and enlarged effective reflection regions with respect to enhanced reflection efficiency were discussed. The results suggest a platform and promising opportunities for preparing high-performance EMI shielding composites.
机译:碳基填料的飞速发展为电磁衰减复合材料的开发提供了一个新的,更有前景的平台。基于独特的填料特性,已广泛追求具有特定结构和形态的复合材料中填料的排列,以实现高性能。在这项工作中,将直接剥落石墨得到的几层石墨烯(FLG)制成石蜡,以制备FLG /蜡复合材料并研究其电磁干扰(EMI)屏蔽性能。与商业化的石墨/蜡样相比,剥离后的FLG /蜡样已显示出大大改善的EMI性能。为了进一步改善EMI屏蔽性能,采用了分压合并方法来对齐FLG填充物,以在垂直于压制方向的平面上实现各向异性。在对准后的FLG /蜡复合材料中,观察到了许多增强的EMI屏蔽性能以及吸收和反射的改善。讨论了与改善的导电互连和相对于增强的反射效率而言扩大的有效反射区域相关的平均粒子间距离模型。结果为制备高性能EMI屏蔽复合材料提供了平台和广阔的机遇。

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