Liu Peipei, Zhao Yinchang, Wang Xichang, Ni Jun, Dai Zhenhong
Department of Physics, Yantai University, Yantai 264005, People's Republic of China.
State Key Laboratory of Low-Dimensional Quantum Physics, Department of Physics, Tsinghua University, Beijing 100084, People's Republic of China.
Phys Chem Chem Phys. 2024 Apr 3;26(14):10868-10879. doi: 10.1039/d4cp00201f.
Fluorite materials have received particular attention in electron optics due to their favorable optical properties. However, further exploration of these materials in the thermoelectric (TE) field is hampered by the lack of studies on their lattice thermal transport properties. In this work, we use first-principles calculations, combined with self-consistent phonon theory, compressive sensing lattice dynamics and the Boltzmann transport equation, to study the microscopic mechanism of lattice thermal transport properties in AF (A = Ca, Sr, Ba) with a fluorite structure. We investigate the effects of three-phonon and four-phonon scattering and quartic anharmonic renormalization of phonon frequencies on this system. The results show that the bonding strength of atoms A (Ca, Sr, and Ba) plays an important role in the thermal transport process, and the third-order anharmonicity also plays an important role in this system. Meanwhile, the role of the quartic anharmonicity cannot be ignored. Our findings not only fill in the gaps in the study of lattice thermal transport of fluorite materials, but also deepen the comprehensive understanding of the high value of fluorite materials.
萤石材料因其良好的光学性能在电子光学领域受到了特别关注。然而,由于缺乏对其晶格热输运性质的研究,这些材料在热电(TE)领域的进一步探索受到了阻碍。在这项工作中,我们使用第一性原理计算,结合自洽声子理论、压缩感知晶格动力学和玻尔兹曼输运方程,来研究具有萤石结构的AF(A = Ca、Sr、Ba)中晶格热输运性质的微观机制。我们研究了三声子和四声子散射以及声子频率的四次非谐重整化对该系统的影响。结果表明,原子A(Ca、Sr和Ba)的键合强度在热输运过程中起重要作用,三阶非谐性在该系统中也起重要作用。同时,四次非谐性的作用也不容忽视。我们的研究结果不仅填补了萤石材料晶格热输运研究的空白,还加深了对萤石材料高价值的全面理解。