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Anomalous temperature dependent thermal conductivity of two-dimensional silicon carbide

机译:二维碳化硅的异常温度依赖导热系数

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摘要

Recently, two-dimensional silicon carbide (2D-SiC) has attracted considerable interest due to its exotic electronic and optical properties. Here, we explore the thermal properties of 2D-SiC using reverse non-equilibrium molecular dynamics simulation. At room temperature, a thermal conductivity of similar to 313 W mK(-1) is obtained for 2D-SiC which is one order higher than that of silicene. Above room temperature, the thermal conductivity deviates the normal 1/T law and shows an anomalous slowly decreasing behavior. To elucidate the variation of thermal conductivity, the phonon modes at different length and temperature are quantified using Fourier transform of the velocity auto-correlation of atoms. The calculated phonon density of states at high temperature shows a shrinking and softening of the peaks, which induces the anomaly in the thermal conductivity. On the other hand, quantum corrections are applied to avoid the freezing effects of phonon modes on the thermal conductivity at low temperature. In addition, the effect of potential on the thermal conductivity calculation is also studied by employing original and optimized Tersoff potentials. These findings provide a means for better understating as well as designing the efficient thermal management of 2D-SiC based electronics and optoelectronics in near future.
机译:最近,由于其异国情调的电子和光学性质,二维碳化硅(2D-SIC)引起了相当大的兴趣。在这里,我们使用反向非平衡分子动力学模拟来探讨2D-SiC的热性能。在室温下,获得类似于313W mk(-1)的导热率,对于2d-siC,是高于硅烯的阶数。在室温以上,导热率偏离正常的1 / T法,并显示出慢慢性缓慢降低的行为。为了阐明导热率的变化,使用原子速度自相关的速度自相关的傅里​​叶变换来量化不同长度和温度的声子模式。在高温下的状态的计算声子密度显示出峰的收缩和软化,峰值诱导导热率的异常。另一方面,应用量子校正以避免声子模式在低温下对导热率的冻结效果。此外,还通过采用原始和优化的Tersoff电位研究了电位对导热性计算的影响。这些发现提供了一种更好地低估的手段,以及在不久的将来设计2D-SIC基电子和光电子的有效热管理。

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