Crystal structure and optical property of complex perovskite oxynitrides ALi0.2Nb0.8O2.8N0.2, ANa0.2Nb0.8O2.8N0.2, and AMg0.2Nb0.8O2.6N0.4 (A = Sr, Ba)
No Thumbnail Available
Date
2017-10-01
Journal Title
Journal ISSN
Volume Title
Publisher
Elsevier
Abstract
Oxynitride type complex perovskites AM0.2Nb0.8O3−xNx (A = Sr, Ba; M = Li, Na, Mg) were newly synthesized by the solid state diffusion of Li+, Na+, or Mg2+ into the layered oxide, A5Nb4O15, with concurrent O/N substitution. Neutron and synchrotron X-ray Rietveld refinement showed that SrLi0.2Nb0.8O2.8N0.2, SrNa0.2Nb0.8O2.8N0.2, and SrMg0.2Nb0.8O2.6N0.4 had body-centered tetragonal symmetry (I4/mcm), while those with A = Ba had simple cubic symmetry (Pm
̅
m). In the tetragonal Sr-compounds, the nitrogen atoms were localized on the c-axial 4a site. However, the octahedral cations, M/Nb (M = Li, Na, Mg) were distributed randomly in all six compounds. The lattice volume of AM0.2Nb0.8O3−xNx was dependent on various factors including the type of A and the electronegativity of M. Compared to the simple perovskites, ANbO2N (A = Sr, Ba), AM0.2Nb0.8O3−xNx had wider band gaps (1.76–2.15 eV for A = Sr and 1.65–2.10 eV for A = Ba), but significantly lower sub-gap absorption. © 2017 Elsevier Inc.
Description
Keywords
Crystal structure, Perovskites, Band theory, Diffusion, Absorption, Cations, Neutron diffraction, X-ray diffraction
Citation
Moon, K. H., Avdeev, M., & Kim, Y.-I. (2017). Crystal structure and optical property of complex perovskite oxynitrides ALi0.2Nb0.8O2.8N0.2, ANa0.2Nb0.8O2.8N0.2, and AMg0.2Nb0.8O2.6N0.4 (A = Sr, Ba). Journal of Solid State Chemistry, 254, 1-8. doi:10.1016/j.jssc.2017.07.006