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【Others Papers】Structural, anisotropic elasticity, and thermal properties of Ga₂O₃ polymorphs: A first-principles study

日期:2025-09-05阅读:66

      Researchers from the Wuhan University have published a dissertation titled "Structural, anisotropic elasticity, and thermal properties of Ga2O3 polymorphs: A first-principles study" in Computational Condensed Matter.

Abstract

      The anisotropic elastic and thermal properties of five different Ga2O3 polymorphs were examined through first-principles calculations grounded in density functional theory (DFT). All phases satisfy mechanical and dynamical stability criteria and exhibit ductile characteristics. Based on the derived elastic constants Cij, the elastic moduli (BEG and v) and hardness parameters (HVKIC and Mdt) for these polymorphs were computed. Anisotropy indices and three-dimensional surface plots of elastic moduli quantify directional stiffness variations, revealing the elastic anisotropy ranking γ > β > ε > δ > α. Acoustic properties derived from Debye temperature, Grüneisen parameter, and direction-dependent sound velocities construct a comprehensive anisotropic sound-velocity database. Lattice thermal conductivities predicted by Slack and Callaway models demonstrate that α- Ga2O3 attains the highest thermal conductivity at and above its Debye temperature, while β- Ga2O3 leads at lower temperatures. These findings furnish design guidelines for selecting optimal Ga2O3 polymorphs in high-temperature power electronics, surface-acoustic-wave devices, and thermal-management applications.

 

DOI:

https://doi.org/10.1016/j.cocom.2025.e01110