Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
10670478 | Thin Solid Films | 2011 | 4 Pages |
Abstract
Optical properties of PbZrxTi1 â xO3 material have been actively studied in the visible and near band-gap region, but data in the vacuum-ultraviolet spectral region is rather scarce. In this work we focus on well known interband transitions for the perovskite materials, 2p â dγ, located in VUV spectral region. Dielectric functions of chemical solution deposited and sputtered PZT were obtained in the spectral range 1-8.8 eV. Differences between the absorption maxima for chemical solution deposited and sputtered PbZrxTi1 â xO3 samples near Kahn-Leyendecker 2p â dγ interband transition were found and are interpreted by change of interatomic distances. This is confirmed by different lattice constants. In the case of PbZrxTi1 â xO3 film with microcracks, the void fraction was estimated from the effective medium approximation. Direct band-gap energies appear to be nearly the same for all reactive sputtered samples weakly depending of Zr/Ti concentration.
Related Topics
Physical Sciences and Engineering
Materials Science
Nanotechnology
Authors
G. Suchaneck, D. Chvostová, J. Kousal, V. Železný, A. Lynnyk, L. JastrabÃk, G. Gerlach, A. Dejneka,