Sun Xianxian, Huang Chuanjin, Wang Lidong, Liang Lei, Cheng Yuanjing, Fei Weidong, Li Yibin
National Key Laboratory of Science and Technology on Advanced Composites in Special Environments, Harbin Institute of Technology, Harbin, 150080, P. R. China.
Center for Composite Materials and Structures, School of Astronautics, Harbin Institute of Technology, Harbin, 150080, P. R. China.
Adv Mater. 2021 Feb;33(6):e2001105. doi: 10.1002/adma.202001105. Epub 2020 Sep 6.
Nanocomposites, multiphase solid materials with at least one nanoscaled component, have been attracting ever-increasing attention because of their unique properties. Graphene is an ideal filler for high-performance multifunctional nanocomposites in light of its superior mechanical, electrical, thermal, and optical properties. However, the 2D nature of graphene usually gives rise to highly anisotropic features, which brings new opportunities to tailor nanocomposites by making full use of its excellent in-plane properties. Here, recent progress on graphene/polymer nanocomposites is summarized with emphasis on strengthening/toughening, electrical conduction, thermal transportation, and photothermal energy conversion. The influence of the graphene configuration, including layer number, defects, and lateral size, on its intrinsic properties and the properties of graphene/polymer nanocomposites is systematically analyzed. Meanwhile, the role of the interfacial interaction between graphene and polymer in affecting the properties of nanocomposites is also explored. The correlation between the graphene distribution in the matrix and the properties of the nanocomposite is discussed in detail. The key challenges and possible solutions are also addressed. This review may provide a constructive guidance for preparing high-performance graphene/polymer nanocomposite in the future.
纳米复合材料是具有至少一种纳米级组分的多相固体材料,因其独特的性能而受到越来越多的关注。鉴于石墨烯具有优异的机械、电学、热学和光学性能,它是高性能多功能纳米复合材料的理想填料。然而,石墨烯的二维性质通常会导致高度各向异性的特征,这为通过充分利用其优异的面内性能来定制纳米复合材料带来了新的机遇。在此,总结了石墨烯/聚合物纳米复合材料的最新进展,重点关注增强/增韧、导电、热传输和光热能转换。系统分析了石墨烯构型(包括层数、缺陷和横向尺寸)对其本征性能以及石墨烯/聚合物纳米复合材料性能的影响。同时,还探讨了石墨烯与聚合物之间的界面相互作用在影响纳米复合材料性能方面的作用。详细讨论了石墨烯在基体中的分布与纳米复合材料性能之间的相关性。还阐述了关键挑战和可能的解决方案。本综述可为未来制备高性能石墨烯/聚合物纳米复合材料提供建设性指导。