Park Junsoo, Dylla Maxwell, Xia Yi, Wood Max, Snyder G Jeffrey, Jain Anubhav
Energy Technologies Area, Lawrence Berkeley National Laboratory, Berkeley, CA, USA.
Department of Materials Science and Engineering, Northwestern University, Evanston, IL, USA.
Nat Commun. 2021 Jun 8;12(1):3425. doi: 10.1038/s41467-021-23839-w.
Band convergence is considered a clear benefit to thermoelectric performance because it increases the charge carrier concentration for a given Fermi level, which typically enhances charge conductivity while preserving the Seebeck coefficient. However, this advantage hinges on the assumption that interband scattering of carriers is weak or insignificant. With first-principles treatment of electron-phonon scattering in the CaMgSb-CaZnSb Zintl system and full Heusler SrSbAu, we demonstrate that the benefit of band convergence can be intrinsically negated by interband scattering depending on the manner in which bands converge. In the Zintl alloy, band convergence does not improve weighted mobility or the density-of-states effective mass. We trace the underlying reason to the fact that the bands converge at a one k-point, which induces strong interband scattering of both the deformation-potential and the polar-optical kinds. The case contrasts with band convergence at distant k-points (as in the full Heusler), which better preserves the single-band scattering behavior thereby successfully leading to improved performance. Therefore, we suggest that band convergence as thermoelectric design principle is best suited to cases in which it occurs at distant k-points.
能带收敛被认为对热电性能有明显益处,因为对于给定的费米能级,它会增加载流子浓度,这通常会提高电荷电导率,同时保持塞贝克系数。然而,这一优势取决于载流子的带间散射较弱或可忽略不计这一假设。通过对CaMgSb - CaZnSb锌蒂体系和全赫斯勒合金SrSbAu中电子 - 声子散射进行第一性原理处理,我们证明,根据能带收敛的方式,带间散射可能会从本质上抵消能带收敛的益处。在锌蒂合金中,能带收敛并不会提高加权迁移率或态密度有效质量。我们将其根本原因追溯到能带在一个k点处收敛这一事实,这会引发形变势和极性光学类型的强烈带间散射。这种情况与能带在远处k点处收敛的情况(如在全赫斯勒合金中)形成对比,后者能更好地保持单带散射行为,从而成功提高性能。因此,我们认为,作为热电设计原则,能带收敛最适合于在远处k点处发生的情况。