We report on a systematic study of the growth of epitaxial TiO2 films deposited by pulsed laser deposition on Ti-terminated SrTiO3 (001) single crystals. By using in situ reflection high energy electron diffraction, low energy electron diffraction, x-ray photoemission spectroscopy, and scanning probe microscopy, we show that the stabilization of the anatase (001) phase is preceded by the growth of a few nanometers thick pseudomorphic SrxTiO2+y (x, y < 1) intermediate layer. The data demonstrate that the formation of this intermediate phase is related to the activation of a long range Sr migration from the SrTiO3 substrate into the film. Our results enrich the phase diagram of the Sr-Ti-O system under epitaxial strain opening a route for the study of the electronic and dielectric properties of the reported Sr-deficient SrTiO3 phase. (C) 2011 American Institute of Physics.
In situ investigation of the early stage of TiO2 epitaxy on (001) SrTiO3 / M., Radovic; M., Salluzzo; Z., Ristic; DI CAPUA, Roberto; N., Lampis; Vaglio, Ruggero; F., Miletto Granozio. - In: THE JOURNAL OF CHEMICAL PHYSICS. - ISSN 0021-9606. - 135:3(2011), pp. 034705-1-034705-7. [10.1063/1.3613637]
In situ investigation of the early stage of TiO2 epitaxy on (001) SrTiO3
DI CAPUA, ROBERTO;VAGLIO, RUGGERO;
2011
Abstract
We report on a systematic study of the growth of epitaxial TiO2 films deposited by pulsed laser deposition on Ti-terminated SrTiO3 (001) single crystals. By using in situ reflection high energy electron diffraction, low energy electron diffraction, x-ray photoemission spectroscopy, and scanning probe microscopy, we show that the stabilization of the anatase (001) phase is preceded by the growth of a few nanometers thick pseudomorphic SrxTiO2+y (x, y < 1) intermediate layer. The data demonstrate that the formation of this intermediate phase is related to the activation of a long range Sr migration from the SrTiO3 substrate into the film. Our results enrich the phase diagram of the Sr-Ti-O system under epitaxial strain opening a route for the study of the electronic and dielectric properties of the reported Sr-deficient SrTiO3 phase. (C) 2011 American Institute of Physics.File | Dimensione | Formato | |
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