Shanghai Institute of Applied Mathematics and Mechanics, Shanghai Key Laboratory of Mechanics in Energy Engineering, Shanghai University, Shanghai 200072, People's Republic of China.
Nanoscale. 2013 Nov 21;5(22):11035-43. doi: 10.1039/c3nr03567k. Epub 2013 Sep 26.
We perform molecular dynamics (MD) simulations to investigate the effect of polar surfaces on the thermal transport in zinc oxide (ZnO) nanowires. We find that the thermal conductivity of nanowires with free polar (0001) surfaces is much higher than that of nanowires that have been stabilized with reduced charges on the polar (0001) surfaces, and also hexagonal nanowires without any transverse polar surface, where the reduced charge model has been proposed as a promising stabilization mechanism for the (0001) polar surfaces of ZnO nanowires. From normal mode analysis, we show that the higher thermal conductivity is due to the shell-like reconstruction that occurs for the free polar surfaces. This shell-like reconstruction suppresses twisting motion in the nanowires such that the bending phonon modes are not scattered by the other phonon modes, and this leads to substantially higher thermal conductivity of the ZnO nanowires with free polar surfaces. Furthermore, the auto-correlation function of the normal mode coordinate is utilized to extract the phonon lifetime, which leads to a concise explanation for the higher thermal conductivity of ZnO nanowires with free polar surfaces. Our work demonstrates that ZnO nanowires without polar surfaces, which exhibit low thermal conductivity, are more promising candidates for thermoelectric applications than nanowires with polar surfaces (and also high thermal conductivity).
我们进行了分子动力学(MD)模拟,以研究极性表面对氧化锌(ZnO)纳米线热输运的影响。我们发现,具有自由极性(0001)表面的纳米线的热导率远高于用极性(0001)表面上的减少电荷稳定的纳米线,以及没有任何横向极性表面的六边形纳米线,其中减少电荷模型被提出作为 ZnO 纳米线(0001)极性表面的一种有前途的稳定机制。从正则模态分析中,我们表明,较高的热导率是由于自由极性表面发生的壳层状重构。这种壳层状重构抑制了纳米线中的扭转运动,使得弯曲声子模式不会被其他声子模式散射,这导致具有自由极性表面的 ZnO 纳米线的热导率大大提高。此外,还利用正则模态坐标的自相关函数提取声子寿命,这为具有自由极性表面的 ZnO 纳米线的高导热率提供了简洁的解释。我们的工作表明,具有低导热率的无极性表面 ZnO 纳米线比具有极性表面(以及高导热率)的纳米线更适合热电应用。