Results in Physics (Jan 2017)

Elastic, thermodynamic and optical behavior of V2AC (A = Al, Ga) MAX phases

  • M.R. Khatun,
  • M.A. Ali,
  • F. Parvin,
  • A.K.M.A. Islam

Journal volume & issue
Vol. 7
pp. 3634 – 3639

Abstract

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This article reports the first-principles calculations of yet unexplored Mulliken bond population, Vickers hardness, thermodynamic and optical properties of MAX phases V2AC (A = Al, Ga). We have also revisited the structural and elastic properties of these phases in order to assess the reliability of our calculations. The temperature and pressure dependence of bulk modulus, Debye temperature, specific heats, and thermal expansion coefficient have been successfully estimated through the quasi-harmonic Debye model in the temperature range from 0 to 1000 K and the pressure range from 0 to 50 GPa. The optical properties such as the dielectric function, refractive index, photoconductivity, absorption coefficients, reflectivity and loss function are also evaluated for the first time. The reflectivity is found to be high which indicates that V2AC (A = Al, Ga) having the same characteristics could be good candidate materials to reduce solar heating up to ∼15 eV. Keywords: V2AC MAX phases, First-principles calculations, Elastic properties, Vickers hardness, Thermodynamic properties, Optical properties