High-resolution electron energy-loss spectroscopy of Ba Ti O 3∕ Sr Ti O 3 multilayers


Autoria(s): Visinoiu, Alina; Alexe, Marin; Hesse, Dietrich; Zhang, J M; Heyroth, F; Syrowatka, F.; Leipner, H S
Data(s)

01/02/2005

Resumo

The dielectric properties of BaTiO3 thin films and multilayers are different from bulk materials because of nanoscale dimensions, interfaces, and stress-strain conditions. In this study, BaTiO3/SrTiO3 multilayers deposited on SrTiO3 substrates by pulsed laser deposition have been investigated by high-energy-resolution electron energy-loss spectroscopy. The fine structures in the spectra are discussed in terms of crystal-field splitting and the internal strain. The crystal-field splitting of the BaTiO3 thin layer is found to be a little larger than that of bulk BaTiO3, which has been interpreted by the presence of the internal strain induced by the misfit at the interface. This finding is consistent with the lattice parameters of the BaTiO3 thin layer determined by the selected area diffraction pattern. The near-edge structure of the oxygen K edge in BaTiO3 thin layers and in bulk BaTiO3 are simulated by first-principle self-consistent full multiple-scattering calculations. The results of the simulations are in a good agreement with the experimental results. Moreover, the aggregation of oxygen vacancies at the rough BaTiO3/SrTiO3 interface is indicated by the increased [Ti]/[O] element ratio, which dominates the difference of dielectric properties between BaTiO3 layer and bulk materials.

Identificador

http://pure.qub.ac.uk/portal/en/publications/highresolution-electron-energyloss-spectroscopy-of-ba-ti-o-3-sr-ti-o-3-multilayers(c21af832-f24f-454f-9b4f-c20ae0684024).html

http://dx.doi.org/10.1103/PhysRevB.71.064108

Idioma(s)

eng

Direitos

info:eu-repo/semantics/restrictedAccess

Fonte

Visinoiu , A , Alexe , M , Hesse , D , Zhang , J M , Heyroth , F , Syrowatka , F & Leipner , H S 2005 , ' High-resolution electron energy-loss spectroscopy of Ba Ti O 3∕ Sr Ti O 3 multilayers ' Physical Review B (Condensed Matter) , vol 71 , no. 6 , Physical Review B 71 (6) , pp. 064108 . DOI: 10.1103/PhysRevB.71.064108

Tipo

article