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h-BN and graphene oxide/epoxy nanocomposite - A comparative study of mechanical, electrical and thermal properties

机译:H-BN和石墨烯氧化物/环氧纳米复合材料 - 机械,电气和热性能的对比研究

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Polymers are generally thermal insulators, thus restricting their applications for low thermal conductivity (TC). There is a craving demand for thermal interface materials that possess high TC so that they quickly dissipate the heat generated by electronics devices during their operations. In this regards Hexagonal Boron Nitride (h-BN) and graphene have been employed as nanofillers for enhancing TC in polymers. In the present work, a comparative study of h-BN and graphene as a nanofiller in epoxy is investigated for mechanical, electrical and thermal properties. In this study, h-BN was synthesized by using wet chemical method with the controlled number of boron nitride layers. Graphene oxide (GO) was synthesized by chemical oxidation and exfoliation of graphite. Synthesized h-BN and the graphene are incorporated as fillers into the epoxy systems. The TC and thermal diffusivity (TS) have increased to ~27.4 % and ~75.5 % for the epoxy composite of h-BN, where only ~5.46 % increment in TC and ~14.2 % TS for GO/Epoxy compared to neat epoxy. The addition of filler has no net effect on electrical conductivity and resistance. This property is an added advantage over graphene making h-BN fillers as excellent sources for high TC and low electrically conductive nanofiller materials.
机译:聚合物通常是热绝缘体,从而限制其用于低导热率(Tc)的应用。对于具有高TC的热界面材料存在渴望需求,使得它们在操作期间快速消散电子设备产生的热量。在这方面,六边形氮化硼(H-BN)和石墨烯已被用作纳米填料以增强聚合物中的Tc。在本作研究中,研究了H-Bn和石墨烯作为环氧树脂中的纳米氧化物的对比研究,用于机械,电气和热性能。在该研究中,通过使用具有受控数量的氮化硼层的湿化学方法来合成H-Bn。石墨烯(GO)通过石墨的化学氧化和剥离合成。合成的H-Bn和石墨烯作为填料掺入环氧系统中。对于H-BN的环氧复合材料,TC和热扩散率(TS)增加到约27.4%和〜75.5%,与整个环氧树脂相比,在TC和GOOXY中的〜14.2%TS的增量仅〜5.46%。添加填料对电导率和电阻没有净效应。该特性是通过石墨烯制造H-BN填料作为高TC和低导电纳米填料材料的优异来源的额外优势。

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