4.5 Article

Structural, electronic, elastic, and thermodynamic properties of CaSi, Ca2Si, and CaSi2 phases from first-principles calculations

Journal

PHYSICA B-CONDENSED MATTER
Volume 538, Issue -, Pages 54-61

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.physb.2018.03.018

Keywords

First-principles calculations; Electronic structures; Elastic constants; Thermodynamic properties

Funding

  1. National Natural Science Foundation of China [51665036, 51264032]
  2. Natural Science Foundation of Jiangxi Province [20152ACB20014]

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The structural, electronic, elastic, and thermodynamic properties of CaSi, Ca2Si, and CaSi2 are systematically investigated by using first-principles calculations method based on density functional theory (DFT). The calculated formation enthalpies and cohesive energies show that CaSi2 possesses the greatest structural stability and CaSi has the strongest alloying ability. The structural stability of the three phases is compared according to electronic structures. Further analysis on electronic structures indicates that the bonding of these phases exhibits the combinations of metallic, covalent, and ionic bonds. The elastic constants are calculated, and the bulk modulus, shear modulus, Young's modulus, Poisson's ratio, and anisotropy factor of polycrystalline materials are deduced. Additionally, the thermodynamic properties were theoretically predicted and discussed.

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