Mingo N, Broido D A
NASA Ames Center for Nanotechnology, 229-1, Moffett Field, California 94035, USA.
Nano Lett. 2005 Jul;5(7):1221-5. doi: 10.1021/nl050714d.
We present the first calculations of finite length carbon nanotube thermal conductivity that extend from the ballistic to the diffusive regime, throughout a very wide range of lengths and temperatures. The long standing problem of vanishing scattering of the "long wavelength phonf dramatically here, making the thermal conductivity diverge as the nanotube length increases. We show that the divergence disappears if 3-phonon scattering processes are considered to second or higher order. Nevertheless, for defect free nanotubes, the thermal conductivity keeps increasing up to very large lengths (10 gm at 300 K). Defects in the nanotube are also able to remove the long wavelength divergence.
我们首次计算了有限长度碳纳米管的热导率,该计算涵盖了从弹道区到扩散区的范围,涉及非常广泛的长度和温度区间。长期以来存在的“长波长声子散射消失”问题在此处显著体现,使得热导率随着纳米管长度增加而发散。我们表明,如果将三声子散射过程考虑到二阶或更高阶,这种发散就会消失。然而,对于无缺陷的纳米管,热导率会一直增加到非常大的长度(在300 K时可达10微米)。纳米管中的缺陷也能够消除长波长发散。