Title of article
Orbital-decomposed electronic structures of cubic zirconia
Author/Authors
Zhang، نويسنده , , Yan and Ji، نويسنده , , Vincent، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2012
Pages
5
From page
1673
To page
1677
Abstract
The detailed orbital-decomposed electronic structures of the cubic zirconia have been investigated by using the first-principles projector augmented wave (PAW) potential within the generalized gradient approximation (GGA) as well as taking into account the on-site Coulomb repulsive interaction (GGA+U). The optimized lattice constant of 5.086 Å is in good agreement with the experimental value. Although without Jahn–Teller structural distortion for eight oxygen anions surrounding Zr cation, their high-symmetry cubic crystal-field splits the five-fold degenerate d states of a free Zr atom into unoccupied doubly degenerate eg ( d Z 2 and d X 2 − Y 2 ) states and occupied as well as unoccupied triply degenerate t2g (dxy, dyz and dzx) states. The contribution to the additional covalency upon ionic bonding between Zr and oxygen is negligible for the doubly degenerate eg ( d Z 2 and d X 2 − Y 2 ) states.
Keywords
D: Crystal-field splitting , A: Oxides , D: Electronic structures , E: First-principles
Journal title
Solid State Communications
Serial Year
2012
Journal title
Solid State Communications
Record number
1793618
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