We adopted and extended an efficient Gr\"uneisen formalism to study the phonon anharmonicity and linear thermal expansion coefficients (TECs) of trigonal bismuth selenide (Bi$_2$Se$_3$) and antimony telluride (Sb$_2$Te$_3$). Anharmonicity of the systems is studied via extensive calculation of Gr\"uneisen parameters that exploit symmetry-preserving deformations. Consistent with experimental findings, a large anisotropy between the TECs in the $a$ and $c$ directions is found. The larger anharmonicity inherent in Sb$_2$Te$_3$, as compared to Bi$_2$Se$_3$ is offset by the volumetric effect, resulting in comparable temperature dependence of their linear TECs. The Debye temperatures deduced from our first-principles data also agree very well with the existing tabulated values. The highly efficient methodology developed in this work, applied for the first time to study the linear TECs of two trigonal thermoelectric systems, opens up exciting opportunities to address the anharmonic effects in other thermoelectrics and other low-symmetry materials.
翻译:我们采纳并扩展了高效的 Gr\"uneisen正式主义,以研究三角双硫乙烯(Bi$_2美元Se美元_3美元)和敌百合氨酸(Sb$2美元Te$3美元)三角双甲酸酯(Sb$2美元2Te$3美元)的调和和和线性热扩张系数(TECs),通过广泛计算利用对称-保存变形的Gr\"uneisen参数,研究这些系统的调和性。根据实验结果,发现美元和美元方向的四氯乙烯(TECs)之间有很大的厌和线性热膨胀系数(TECs)。Sb$2Se$2美元Te_3美元所固有的更大的调和性(Bi$2美元Se$2Se_3美元)之间的调和性效应被体积效应所抵消,导致其线性TECs的温度依赖性相当。从我们第一个原则数据中推导出的道温度也与现有的制表值非常吻一致。在这项工作中开发的高效方法,首次用于研究两个三角温度温度温度温度低材料的直位热室的热室对其他热室中,首次研究。