论文标题
二维BI $ _2 $ te $ _3 $,BI $ _2 $ SE $ _3 $和SB $ _2 $ _2 $ TE $ _3 $的二维带的环形乐队的热电计算:简单散射近似值的比较
Thermoelectric calculations of ring-shaped bands in two-dimensional Bi$_2$Te$_3$, Bi$_2$Se$_3$ and Sb$_2$Te$_3$: a comparison of simple scattering approximations
论文作者
论文摘要
带有环形电子带的材料是有希望的热电候选物,因为预计它们的异常色散形状会产生较大的功率因子。尽管这些材料的先前计算取决于恒定的无均值路径或松弛时间的假设,但最近的电子散射的第一原理模型表明,电子密度(所谓的DOS散射模型)可以更好地近似散射速率。在这项工作中,我们使用密度功能理论来研究单一和双重Quintuple-Layer BI $ _2 $ _2 $ _3 $,BI $ _2 $ _2 $ SE $ _3 $和SB $ _2 $ TE $ _3 $,重点是了解三个上述散射近似如何影响热电学性能,将其放置在模型上。单个五重奏层材料具有两种环形价带最大值,可在导电通道中突然增加,从而使功率因数受益。此外,在带边缘的下方,一个位于两个最大值之间的环形最小值,可以进一步增强热电性能,但仅使用DOS散射模型。这来自DOS的急剧下降,因此散射在环形最小值下方。引入了分析八粒分散模型,并显示出可定性地捕获观察到的特征。双五重奏层材料的热电学特性显着较差,因为与单个五重杆层相比,它们的分散体经过显着修饰。环形带的好处对两个环最大值的对齐和环形各向异性的程度敏感。总体而言,单个五重奏的BI $ _2 $ te $ _3 $和BI $ _2 $ SE $ _3 $是最有前途的,DOS散射模型可提供最高的功率因子。
Materials with ring-shaped electronic bands are promising thermoelectric candidates, since their unusual dispersion shape is predicted to give large power factors. While previous calculations of these materials have relied on the assumption of a constant mean-free-path or relaxation time, recent first-principles modeling of electron-phonon scattering suggests that the scattering rates may be better approximated by the electron density-of-states (so-called DOS scattering model). In this work, we use density functional theory to investigate single and double quintuple-layer Bi$_2$Te$_3$, Bi$_2$Se$_3$ and Sb$_2$Te$_3$, with a focus on understanding how the three aforementioned scattering approximations impact thermoelectric performance -- emphasis is placed on the DOS scattering model. The single quintuple-layer materials possess two ring-shaped valence band maxima that provide an abrupt increase in conducting channels, which benefits the power factor. Additionally, below the band edge a ring-shaped minimum, located between the two maxima, is found to further enhance the thermoelectric performance but only with the DOS scattering model. This comes from a sharp drop in the DOS, and thus scattering, just below the ring-shaped minimum. An analytic octic dispersion model is introduced and shown to qualitatively capture the observed features. The double quintuple-layer materials display notably worse thermoelectric properties, since their dispersions are significantly modified compared to the single quintuple-layer case. The benefits of ring-shaped bands are sensitive to the alignment of the two ring maxima and to the degree of ring anisotropy. Overall, single quintuple-layer Bi$_2$Te$_3$ and Bi$_2$Se$_3$ are most promising, with the DOS scattering model giving the highest power factors.