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Enhancing the Heat Transfer Efficiency in Graphene-Epoxy Nanocomposites Using a Magnesium Oxide-Graphene Hybrid Structure

机译:使用氧化镁-石墨烯杂化结构提高石墨烯-环氧纳米复合材料的传热效率

摘要

Composite materials, such as organic matrices doped with inorganic fillers, can generate new properties that exhibit multiple functionalities. In this paper, an epoxy-based nanocomposite that has a high thermal conductivity and a low electrical conductivity, which are required for the use of a material as electronic packaging and insulation, was prepared. The performance of the epoxy was improved by incorporating a magnesium oxide-coated graphene (MgO@GR) nanomaterial into the epoxy matrix. We found that the addition of a MgO coating not only improved the dispersion of the graphene in the matrix and the interfacial bonding between the graphene and epoxy but also enhanced the thermal conductivity of the epoxy while preserving the electrical insulation. By adding 7 wt % MgO@GR, the thermal conductivity of the epoxy nanocomposites was enhanced by 76% compared with that of the neat epoxy, and the electrical resistivity was maintained at 8.66 × 1014 Ωm.
机译:复合材料(例如掺有无机填料的有机基质)可以产生具有多种功能的新特性。在本文中,制备了具有高热导率和低电导率的基于环氧的纳米复合材料,这是使用该材料作为电子封装和绝缘所必需的。通过将涂有氧化镁的石墨烯(MgO @ GR)纳米材料掺入环氧基质中,可以改善环氧的性能。我们发现,添加MgO涂层不仅可以改善石墨烯在基体中的分散性以及石墨烯与环氧之间的界面键合,还可以在保持电绝缘性的同时提高环氧的导热性。通过添加7 wt%的MgO @ GR,与纯环氧树脂相比,环氧纳米复合材料的导热系数提高了76%,电阻率保持在8.66×1014Ωm。

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