First-principles DFT+\emph{U} study of structural and electronic properties of PbCrO$_{3}$
Abstract
We have performed a systematic first-principles investigation to calculate the structural, electronic, and magnetic properties of PbCrO, CrPbO as well as their equiproportional combination. The local density approximation (LDA) and the generalized gradient approximation theoretical formalisms have been used to account for the strong on-site Coulomb repulsion among the localized Cr 3d electrons. By choosing the Hubbard \emph{U} parameter around 4 eV, ferromagnetic, and/or antiferromagnetic ground states can be achieved and our calculated lattice constants, bulk moduli, and equation of states are in good agreement with recent experiments [W. Xiao \emph{et al.}, PNAS \textbf{107}, 14026 (2010)]. The bonding nature of BO bonds in these ABO compounds exhibit evident covalent character and our electron transferring study indicates that the ionicity shows decreasing trend with increasing fraction of CrO octahedron within the PbCrO-CrPbO random compounds. The lengthes of BO bonds determine their lattice parameters, thus, clearly indicates that the abnormally large volume and compressibility is due to the contain of CrPbO in the experimental sample and the transition of PbO octahedron to CrO upon compression.
Keywords
Cite
@article{arxiv.1012.0143,
title = {First-principles DFT+\emph{U} study of structural and electronic properties of PbCrO$_{3}$},
author = {Bao-Tian Wang and Wen Yin and Wei-Dong Li and Fangwei Wang},
journal= {arXiv preprint arXiv:1012.0143},
year = {2012}
}
Comments
7 pages JAP, 6 figures