Institute of Thermal Science and Technology, Shandong University, Jinan 250061, China.
Nanoscale. 2019 Nov 14;11(42):19763-19771. doi: 10.1039/c9nr02835h. Epub 2019 Aug 6.
An emerging two-dimensional (2D) tungsten disulfide (WS) has been attracting much attention due to its excellent physical properties. In this work, the thermal transports in isotopically doped WS monolayers modified with Rectangle Carpet (RC) and Sierpinski Carpet (SC) structures are investigated systematically using molecular dynamics simulations. The effects of fractal number and temperature on thermal conductivity (k) are evaluated. The SC fractal structures have lower thermal conductivities in comparison with the RC structures for each fractal number. Furthermore, an initial decreasing and then increasing trend of k is observed with increasing fractal number. We can also observe a negative correlation between k and temperature. The phonon dispersion, group velocity, participation ratio, spatial distribution of energy and phonon density of states are evaluated to reveal the thermal transport mechanism in WS monolayers. This work provides valuable information on phonon behavior to tune the thermal transport in 2D WS monolayers based thermoelectric applications.
二维(2D)二硫化钨(WS)由于其优异的物理性能而引起了广泛的关注。在这项工作中,我们使用分子动力学模拟系统地研究了具有矩形地毯(RC)和谢尔宾斯基地毯(SC)结构的同位素掺杂 WS 单层中的热输运。评估了分形数和温度对热导率(k)的影响。对于每个分形数,SC 分形结构的热导率均低于 RC 结构。此外,k 随分形数的增加呈现先减小后增大的趋势。我们还可以观察到 k 与温度之间存在负相关关系。评估声子色散、群速度、参与比、能量空间分布和声子态密度,以揭示 WS 单层中的热输运机制。这项工作为基于二维 WS 单层的热电器件中调节热输运的声子行为提供了有价值的信息。