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Three-dimensional graphene monolith-based composite: superiority in properties and applications

机译:基于三维石墨烯整体的复合材料:性能和应用的优越性

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With the development of graphene research, the three-dimensional graphene monolith (3DGM), which can be prepared by the chemical vapour deposition method (CVD-3DGM) and the self-assembly of reduced graphene oxide nanosheets (RGO-3DGM), has drawn increasing attention because of its properties and application prospects that are better than those of two-dimensional graphene nanosheets. By utilising its excellent electrical property, large BET area and favourable mechanical strength, some research findings on the 3DGM-assisted thermal interface materials, conductive polymers and films, dye-sensitised solar cells and supercapacitors have been reported. In this perspective, we review recent progress in the synthesis and application of 3DGM-based composites and devices. In particular, the advantages of the CVD-3DGM are highlighted after comparing the reports, and the specific reasons are analysed and discussed. Finally, the probable directions of development, research focus and corresponding challenges for the preparation and application of the CVD-3DGM in the future are proposed.
机译:随着石墨烯研究的发展,可以通过化学气相沉积方法(CVD-3DGM)和减少的石墨烯纳米片(RGO-3DGM)的自组装来制备的三维石墨烯整体(3DGM)并绘制由于其性质和应用前景优于二维石墨烯Nanoshss的性质和应用前景,因此提高了关注。通过利用其优异的电气性质,较大的BET区域和有利的机械强度,已经报道了3DGM辅助热界面材料,导电聚合物和薄膜,染料敏化太阳能电池和超级电容器上的一些研究发现。在这种观点中,我们回顾了基于3DGM的复合材料和设备的合成和应用的最新进展。特别地,在比较报告后突出显示CVD-3DGM的优点,并分析并讨论了具体原因。最后,提出了未来CVD-3DGM的制备和应用的可能发展,研究重点和相应挑战的挑战。

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