Polymorphism in Bi-based perovskite oxides: a first-principles study
arXiv:1804.02228 · doi:10.1103/PhysRevMaterials.2.104417
Abstract
Under normal conditions, bulk crystals of BiScO , BiCrO, BiMnO, BiFeO, and BiCoO present three very different variations of the perovskite structure: an antipolar phase, a rhombohedral phase with a large polarization along the space diagonal of the pseudocubic unit cell, and a supertetragonal phase with even larger polarization. With the aim of understanding the causes for this variety, we have used a genetic algorithm to search for minima in the surface energy of these materials. Our results show that the number of these minima is very large when compared to that of typical ferroelectric perovskites like BaTiO and PbTiO , and that a fine energy balance between them results in the large structural differences seen. As byproducts of our search we have identified charge-ordering structures with low energy in BiMnO , and several phases with energies that are similar to that of the ground state of BiCrO. We have also found that a inverse supertetragonal phase exists in bulk, likely to be favored in films epitaxially grown at large values of tensile misfit strain.
References in corpus (5)
- Origin of magnetoelectric behavior in BiFeO
- First principles study of the multiferroics BiFeO, BiFeCrO, and BiCrO: Structure, polarization, and magnetic ordering temperature
- Energetics of oxygen-octahedra rotations in perovskite oxides from first principles
- Bismuth-based perovskites as multiferroics
- Multiferroic BiNiMnO Thin Films: A Computational Prediction