论文标题

$ p $ type pbte的电子 - 音波散射和热电传输来自第一原理

Electron-phonon scattering and thermoelectric transport in $p$-type PbTe from first principles

论文作者

D'Souza, Ransell, Cao, Jiang, Querales-Flores, José D., Fahy, Stephen, Savić, Ivana

论文摘要

我们提出了第一个原理模型的电子散射机制和L <200b> $ p $ p $ type pbte的$σ$ valleys的模型,这是其热诱导的变化。我们在室温下的所有热电传输参数的计算值与实验非常吻合,以实验广泛的掺杂浓度。由于纵向光学声子引起的散射是$ p $ type PBTE中的主要散射机制,而横向光学模式引起的散射是最弱的。由于L和$σ$ valleys之间的较大能量差异,L谷对300 K的热电传输最大的贡献。我们表明,L和$σ$ valleys之间的散射和$σ$ valleys的其他传输通道对300 K处的$ P $ -PB型PBTE的整体热电性能都有益。我们的发现支持这样的想法,即具有高山谷脱胶的材料可能是很好的热电学。

We present a first principles based model of electron-phonon scattering mechanisms and thermoelectric transport at the L and $Σ$ valleys in <200b>$p$-type PbTe, accounting for their thermally induced shifts. Our calculated values of all thermoelectric transport parameters at room temperature are in very good agreement with experiments for a wide range of doping concentrations. Scattering due to longitudinal optical phonons is the main scattering mechanism in $p$-type PbTe, while scattering due to transverse optical modes is the weakest. The L valleys contribute most to thermoelectric transport at 300 K due to the sizeable energy difference between the L and $Σ$ valleys. We show that both scattering between the L and $Σ$ valleys and additional transport channels of the $Σ$ valleys are beneficial for the overall thermoelectric performance of $p$-type PbTe at 300 K. Our findings thus support the idea that materials with high valley degeneracy may be good thermoelectrics.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源