4.7 Article

Phase transitions and elastic anisotropies of SiC polymorphs under high pressure

期刊

CERAMICS INTERNATIONAL
卷 47, 期 5, 页码 6187-6200

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ELSEVIER SCI LTD
DOI: 10.1016/j.ceramint.2020.10.197

关键词

Silicon carbide; Phase transitions; Anisotropic elasticity; Negative Poisson's ratio; High pressure

资金

  1. National Natural Science Foundation of China [51774105]

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This study investigated the structures, equations of state, phase transitions, mechanical stability, and elastic anisotropies of five SiC polymorphs under pressure through first-principles calculations. A new phase transition criterion was developed, and the negative Poisson's ratio of zinc blende SiC was verified.
The structures, equations of state, phase transitions, mechanical stability, and elastic anisotropies of five SiC polymorphs (wurtzite, 4H, 6H, zinc blende, and rocksalt phases) under pressure were investigated based on first-principles calculations. The optimal structural parameters, densities, and volumes of the five SiC polymorphs under zero and high pressure were obtained and analyzed. The pressures of the phase and stability-instability transitions were predicted using the minimum energy principle and improved Born mechanical stability criteria, respectively, and a new phase transition criterion was developed. The elastic anisotropies of SiC under zero and high pressure were systematically discussed, and the negative Poisson's ratio of zinc blende SiC was verified.

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