English

Relative phase stability and lattice dynamics of NaNbO$_3$ from first-principles calculations

Materials Science 2015-05-30 v1

Abstract

We report total energy calculations for different crystal structures of NaNbO3_3 over a range of unit cell volumes using the all-electron full-potential (L)APW method. We employed both the local-density approximation (LDA) and the Wu-Cohen form of the generalized gradient approximation (GGA-WC) to test the accuracy of these functionals for the description of the complex structural behavior of NaNbO3_3. We found that LDA not only underestimates the equilibrium volume of the system but also predicts an incorrect ground state for this oxide. The GGA-WC functional, on the other hand, significantly improves the equilibrium volume and provides relative phase stability in better agreement with experiments. We then use the GGA-WC functional for the calculation of the phonon dispersion curves of cubic NaNbO3_3 to identify the presence of structural instabilities in the whole Brillouin zone. Finally, we report comparative calculations of structural instabilities as a function of volume in NaNbO3_3 and KNbO3_3 to provide insights for the understanding of the structural behavior of K1x_{1-x}Nax_xNbO3_3 solid solutions.

Keywords

Cite

@article{arxiv.1110.1040,
  title  = {Relative phase stability and lattice dynamics of NaNbO$_3$ from first-principles calculations},
  author = {R. Machado and M. Sepliarsky and M. G. Stachiotti},
  journal= {arXiv preprint arXiv:1110.1040},
  year   = {2015}
}

Comments

Accepted for publication in Physical Review B