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Novel electrical conduction properties obtained in few-layer graphene/epoxy nanocomposites

机译:在几层石墨烯/环氧纳米复合材料中获得的新型导电性能

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In this paper, we propose to study the impact of very low filler content (0.005 wt.%) of graphite nanoflakes (80 nm), multi-layer (5-20 nm) and few-layer (1-2 nm) graphene on the electrical conductivity of an epoxy nanocomposite. The results highlight that an improvement of the quality of the exfoliation process of graphene, particularly in few-layer graphene/epoxy, allows decreasing the DC electrical conductivity (by a factor 100 compared to neat epoxy) in a large range of electric field from 1 to 10 kV/mm. This novel property could allow decreasing space charge trapping within the insulator bulk at the origin of long-term electrical ageing.
机译:在本文中,我们建议研究极低填料含量(0.005 wt。%)的石墨纳米薄片(80 nm),多层(5-20​​ nm)和多层(1-2 nm)石墨烯对石墨烯的影响。环氧纳米复合材料的电导率。结果表明,改善石墨烯剥落工艺的质量,尤其是在几层石墨烯/环氧树脂中,可以在较大的电场范围内将直流电导率(与纯环氧相比降低100倍)从1降低到1。至10 kV / mm。这种新颖的特性可以减少在长期电老化的开始,空间电荷在绝缘体内部的陷获。

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