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Thermal Transport of Graphene Sheets with Fractal Defects

机译:石墨烯片的热传输分形缺陷

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摘要

Graphene combined with fractal structures would probably be a promising candidate design of an antenna for a wireless communication system. However, the thermal transport properties of fractal graphene, which would influence the properties of wireless communication systems, are unclear. In this paper, the thermal transport properties of graphene with a Sierpinski fractal structure were investigated via the reverse non-equilibrium molecular dynamics simulation method. Simulation results indicated that the thermal conductivity of graphene with fractal defects decreased from 157.62 to 19.60 (W m−1 K−1) as the fractal level increased. Furthermore, visual display and statistical results of fractal graphene atomic heat flux revealed that with fractal levels increasing, the real heat flux paths twisted, and the angle distributions of atomic heat flux vectors enlarged from about (−30°, 30°) to about (−45°, 45°). In fact, the fractal structures decreased the real heat flow areas and extended the real heat flux paths, and enhanced the phonon scattering in the defect edges of the fractal graphene. Analyses of fractal graphene thermal transport characters in our work indicated that the heat transfer properties of fractal graphene dropped greatly as fractal levels increased, which would provide effective guidance to the design of antennae based on fractal graphene.
机译:石墨烯具有分形结构相结合可能会是一个无线通信系统的天线的有希望的候选设计。然而,分形石墨烯的热传输性能,这会影响无线通信系统的特性,目前还不清楚。在本文中,石墨烯具有的Sierpinski分形结构的热输送性质经由反向非平衡分子动力学模拟方法进行了研究。模拟结果表明,随着分形缺陷石墨烯的导热性从157.62降至19.60(W M-1 K-1)作为分形水平增加。此外,可视化显示和分形石墨烯的原子的热通量的统计结果表明,与分形水平的增加,实际热通量路径扭曲,并从放大了约原子热通量矢量的角度分布(-30°,30°)至大约( -45°,45°)。实际上,分形结构降低了真实热流动区域和扩展的真实热通量路径,并且增强了分形的石墨烯的缺陷边缘声子散射。在我们的工作分石墨烯热传输字符分析表明,分形石墨烯的传热性能大大下降分形水平增高,这会向天线基于分形石墨烯的设计提供有效的指导。

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