国内精品国产三级国产在线专_欧美日韩在线播放一区二区_成人xxxx视频_欧美激情视频一区_色女人综合av_久久久亚洲影院_久久久久久九九_成人免费网站在线_日韩美女毛茸茸_狠狠干一区二区

Links
Contact Info.
  • Address:廣州市大學城外環西路100號廣東工業大學停車場實驗區103
  • Zip:510006
  • Tel:00000000
  • Fax:
  • Email:[email protected]
Current Location :> Home > Publications > Text
Highly thermal conductivity and flame retardant flexible graphene/MXene paper based on an optimized interface and nacre laminated structure
writer:Yingchun Liu, Kun Wu, Maoping Lu and et al
keywords:MXene, Graphene oxide, Thermal conductivity, Flame retardancy
source:期刊
specific source:Composites Part A: Applied Science and Manufacturing
Issue time:2021年

Low thermal conductivity (TC) and poor flame retardancy of graphene oxide (GO) have limited its application in thermal management. Herein, a facile strategy is developed to fabricate flexible and free-standing graphene/MXene (GM) films by filtration of MXene and GO dispersions, followed by reduction and thermal welding. As results, interlamellar insertion of MXene into graphene has occurred and optimized interface was constructed between MXene and graphene. According to Y. Agari’s semi-empirical model and modified Maxwell-Garnett effective medium approximation, demonstrating that an optimized interface between MXene and graphene is conducive to heat conduction, and reduces the interface scattering. In-plane TC thus reached to 26.49 Wm?1K?1, and the thermal boundary resistance decreased to 8.81 × 10?10 from 1.54 × 10?8 m2KW?1. GM films also present excellent flame retardancy (peak heat release is ~10 W g?1) and it still maintained initial shape after combustion. Using as-prepared GM films as heat dissipation, we demonstrate its potential usefulness in electronic device-cooling applications.