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Thermally Conductive and Electrical Insulation BNNS/CNF Aerogel Nano-Paper

机译:导热和电绝缘BNNS / CNF气凝胶纳米纸

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摘要

Adding heat conducting particles to a polymer matrix to prepare thermally conductive and electrical insulation materials is an effective approach to address the safety issues arising from the accumulation of heat in the working process of electronic devices. In this work, thermally conductive and electrical insulation nano-paper, consisting of Boron Nitride nano-sheet (BNNS) and cellulose nanofiber (CNF), was prepared using an aerogel 3D skeleton template method. For comparison, BNNS/CNF nano-paper was also produced using a simple blending method. At a BNNS loading of 50 wt%, the thermal conductivity of BNNS/CNF aerogel nano-paper and blended nano-paper at 70 °C are 2.4 W/mK and 1.2 W/mK respectively, revealing an increase of 94.4%. Under similar conditions, the volume resistivity of BNNS/CNF aerogel nano-paper and blended nano-paper are 4.0 × 1014 and 4.2 × 1014 Ω·cm respectively. In view of its excellent thermal conductivity and electrical insulation performance, therefore, BNNS/CNF aerogel nano-paper holds great potential for electronic-related applications.
机译:将导热颗粒添加到聚合物基质中以制备导热和电绝缘材料是解决由于电子设备的工作过程中热量累积而引起的安全问题的有效方法。在这项工作中,使用气凝胶3D骨架模板方法制备了由氮化硼纳米片(BNNS)和纤维素纳米纤维(CNF)组成的导热和电绝缘纳米纸。为了进行比较,还使用简单的混合方法生产了BNNS / CNF纳米纸。在BNNS负载为50 wt%的情况下,BNNS / CNF气凝胶纳米纸和混合纳米纸在70°C时的热导率分别为2.4 W / mK和1.2 W / mK,增加了94.4%。在相似条件下,BNNS / CNF气凝胶纳米纸和混合纳米纸的体积电阻率分别为4.0×10 14 和4.2×10 14 Ω·cm。因此,鉴于其出色的导热性和电绝缘性能,BNNS / CNF气凝胶纳米纸在电子相关应用方面具有巨大潜力。

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