Jiangsu Key Laboratory for Design & Manufacture of Micro/Nano Biomedical Instruments and School of Mechanical Engineering, Southeast University, Nanjing 210096, People's Republic of China.
Nanoscale. 2016 Oct 7;8(37):16612-20. doi: 10.1039/c6nr04199j. Epub 2016 Jul 18.
Molecular dynamics simulations are performed to investigate the thermal transport properties of a three-dimensional (3D) anisotropic phononic crystal consisting of silicon nanowires and films. The calculation shows that the in-plane thermal conductivity is negatively correlated with the out-of-plane thermal conductivity upon making geometric changes, whether varying the nanowire diameter or the film thickness. This enables the anisotropy ratio of thermal conductivity to be tailored over a wide range, in some cases by more than a factor of 20. Similar trends in thermal conductivity are also observed from an independent phonon ray tracing simulation considering only diffuse boundary scattering effects, though the range of anisotropy ratios is smaller than that obtained in MD simulation. By analyzing the phonon dispersion relation with varied geometric parameters, it is found that increasing the nanowire diameter increases the out-of-plane acoustic phonon group velocities, but reduces the in-plane longitudinal and fast transverse acoustic phonon group velocities. The calculated phonon irradiation further verified the negative correlation between the in-plane and the out-of-plane thermal conductivity. The proposed 3D phononic crystal may find potential application in thermoelectrics, energy storage, catalysis and sensing applications owing to its widely tailorable thermal conductivity.
采用分子动力学模拟方法研究了由硅纳米线和薄膜组成的三维各向异性声子晶体的热输运性质。计算表明,通过改变纳米线直径或薄膜厚度进行几何变化时,面内热导率与面外热导率呈负相关。这使得热导率各向异性比能够在很宽的范围内进行调节,在某些情况下甚至超过 20 倍。从仅考虑漫散射边界散射效应的独立声子射线追踪模拟中也观察到了类似的热导率趋势,尽管各向异性比的范围小于 MD 模拟中得到的范围。通过分析具有不同几何参数的声子色散关系,发现增大纳米线直径会增大面外声波群速度,但会降低面内纵波和快横波声子群速度。计算得到的声子辐照进一步验证了面内热导率和面外热导率之间的负相关关系。由于其热导率具有广泛的可调性,所提出的三维声子晶体可能在热电、储能、催化和传感应用中具有潜在的应用价值。