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Souza, I.A.; Gurgel, M.F.C.; Santos, L.P.S.; Goes, M.S.; Cava, S.; Cilense, M.; Rosa, I.L.V.; Paiva-Santos, C.O.; Longo, E., E-mail: iedo@posgrad.iq.unesp.br2006
AbstractAbstract
[en] Disordered and crystalline Ba0.45Sr0.55TiO3 (BST) powder processed at low temperature was synthesized by the polymeric precursor method. The single-phase perovskite structure of the ceramics was identified by the Raman and X-ray diffraction techniques. Photoluminescence at room temperature was observed only in a disordered BST sample. Increasing the calcination time intensified the photoluminescence (PL), which reached its maximum value in the sample heat treated at 300 deg. C for 30 h. This emission may be correlated with the structural disorder. Periodic ab initio quantum-mechanical calculations using the CRYSTAL98 program can yield important information regarding the electronic and structural properties of crystalline and disordered solids. The experimental and theoretical results indicate the presence of intermediary energy levels in the band gap. This is ascribed to the break in symmetry, which is responsible for visible photoluminescence in the material's disordered state at room temperature
Source
S0301-0104(05)00407-6; Copyright (c) 2005 Elsevier Science B.V., Amsterdam, The Netherlands, All rights reserved.; Country of input: International Atomic Energy Agency (IAEA)
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Journal Article
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ALKALINE EARTH METAL COMPOUNDS, CHEMICAL REACTIONS, COHERENT SCATTERING, DECOMPOSITION, DIFFRACTION, EMISSION, LUMINESCENCE, MECHANICS, MINERALS, OXIDE MINERALS, OXYGEN COMPOUNDS, PEROVSKITES, PHOTON EMISSION, PYROLYSIS, SCATTERING, STRONTIUM COMPOUNDS, TEMPERATURE RANGE, THERMOCHEMICAL PROCESSES, TITANATES, TITANIUM COMPOUNDS, TRANSITION ELEMENT COMPOUNDS, VARIATIONS
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