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首页> 外文期刊>Composites Science and Technology >Sandwich-structured PVA/rGO films from self-construction with high thermal conductivity and electrical insulation
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Sandwich-structured PVA/rGO films from self-construction with high thermal conductivity and electrical insulation

机译:夹层结构化的PVA / RGO薄膜,具有高导热率和电绝缘的自动结构

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摘要

Highly thermally conductive polymer composites are desirable for the thermal management of modern electronic devices. Although the thermal conductivity issue has been improved effectively with many methods, it always fails in maintaining the electrical insulation performance at the same time, which has become another great challenge. Here the sandwich-structured PVA/PVA-rGO/PVA (recorded as PVA/rGO) composite films simultaneously owning high thermal conductivity, excellent electrical insulation and outstanding flexibility were designed and prepared through self-construction strategy. The obtained results show that the prepared composite films achieved a high in-plane thermal conductivity of 4.00 W m(-1) K-1 with only 5 wt% rGO loading, which was about 970% higher than that of pure PVA (0.413 W m(-1) K-1). The high thermal conductivity is attributed to the formation of the homogeneous intermediate layer of PVA-rGO. In addition, the low filler loading makes the composite film remain excellent mechanical flexibility, and the PVA in the upper and lower layers of the composite film keeps good electrical insulation (volume resistivity beyond 10(9) Omega cm). The prepared composite films not only have great potential applications in the field of thermal management and flexible electronic devices but also have the possibility to conduct the mass production of polymer composites.
机译:高度导热的聚合物复合材料对于现代电子设备的热管理是期望的。虽然具有许多方法有效地提高了导热性问题,但它始终在保持电气绝缘性能的同时,这已成为另一个巨大的挑战。这里,通过自我建设策略,设计了夹层结构的PVA / PVA-RGO / PVA(记录为PVA / RGO)复合薄膜,并通过自动建设策略设计和制定了优异的电绝缘和出色的灵活性。将所得到的结果表明,所制备的复合膜达到4.00脉冲W M(-1)K-1与仅5%(重量)RGO负载,这是大约比纯PVA的高970%(0.413 W上的高的面内的热导率m(-1)k-1)。高导热率归因于PVA-RGO的均相中间层的形成。另外,低填充物加载使复合膜保持优异的机械柔性,并且复合膜的上层和下层中的PVA保持良好的电绝缘(体积电阻率超过10(9)ΩCm)。制备的复合薄膜不仅具有热管理和柔性电子设备领域的潜在应用,而且还具有进行聚合物复合材料的大规模生产的可能性。

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