Interdisciplinary Materials Research Center, School of Materials Science and Engineering , Tongji University , Shanghai 201804 , China.
Department of Mechanical Engineering , The University of Hong Kong , Pokfulam Road, Hong Kong SAR 999077 , China.
ACS Appl Mater Interfaces. 2018 Nov 21;10(46):39904-39911. doi: 10.1021/acsami.8b15080. Epub 2018 Nov 9.
Band convergence has been proven as an effective approach for enhancing thermoelectric performance, particularly in p-type IV-VI semiconductors, where the superior electronic performance originates from the contributions of both L and Σ band valleys when they converge to have a small energy offset. When alloying with cubic IV-VI semiconductors, CdTe has been found as an effective agent for achieving such a band convergence. This work focuses on the effect of CdTe-alloying on the thermoelectric transport properties of GeTe, where the carrier concentration can be tuned in a broad range through Bi-doping on Ge site. It is found that CdTe-alloying indeed helps to converge the valence bands of GeTe in both low- T rhombohedral and high- T cubic phases for an increase in Seebeck coefficient with a decrease in mobility. In addition, the strong phonon scattering due to the existence of high-concentration Cd/Ge and Bi/Ge substitutions leads the lattice thermal conductivity to be reduced to as low as 0.6 W/(m-K). These lead to an effectively increased average thermoelectric figure of merit ( ZT ∼ 1.2) at 300-800 K, which is higher than that of many IV-VI materials with CdTe-alloying or alternatively with MnTe-, MgTe-, SrTe-, EuTe-, or YbTe-alloying for a similar band convergence effect.
能带收敛已被证明是一种提高热电性能的有效方法,特别是在 p 型 IV-VI 半导体中,当 L 和 Σ 能带谷收敛到具有小的能量偏移时,它们的贡献产生了优异的电子性能。在与立方 IV-VI 半导体合金化时,CdTe 已被发现是实现能带收敛的有效手段。这项工作专注于 CdTe 合金化对 GeTe 热电输运性能的影响,通过在 Ge 位掺杂 Bi,可以在很宽的范围内调节载流子浓度。研究发现,CdTe 合金化确实有助于在低 T 三方相和高 T 立方相的 GeTe 中收敛价带,从而提高 Seebeck 系数,降低迁移率。此外,由于存在高浓度的 Cd/Ge 和 Bi/Ge 取代,声子散射很强,导致晶格热导率降低至低至 0.6 W/(m-K)。这些导致在 300-800 K 范围内有效增加了平均热电优值(ZT∼1.2),高于许多具有 CdTe 合金化或 MnTe-、MgTe-、SrTe-、EuTe-、YbTe-合金化的 IV-VI 材料,因为它们具有类似的能带收敛效果。