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Optical studies of transparent ferroelectric strontium–barium niobate/silica nanocomposite
Author(s) -
ShengGuo Lu,
Chee Leung Mak,
K. H. Wong
Publication year - 2003
Publication title -
journal of applied physics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.699
H-Index - 319
eISSN - 1089-7550
pISSN - 0021-8979
DOI - 10.1063/1.1599047
Subject(s) - materials science , strontium barium niobate , ferroelectricity , raman spectroscopy , nanocomposite , crystallite , photoluminescence , sol gel , analytical chemistry (journal) , annealing (glass) , mineralogy , optics , composite material , optoelectronics , nanotechnology , dielectric , chemistry , physics , chromatography , metallurgy
Transparent ferroelectric strontium–barium niobate (SBN) doped silica nanocomposites were prepared via a modified sol–gel process. Their structural properties were characterized by x-ray diffraction and Raman spectroscopy. It was found that by annealing the nanocomposites at temperatures between 600 and 800 °C, pure tetragonal tungsten bronze phase SBN crystallites with sizes ranging from 8 to 23 nm were obtained. Differential scanning calorimetry measurement has indicated that nanometer size ferroelectric SBN has a reduced phase transition temperature compared with that of bulk SBN. Photoluminescence and optical transmission studies of these composites have revealed noticeable blueshifts in the emission band peak and the absorption edge, respectively. The refractive index of the nanocomposite annealed at 700 °C was measured by ellipsometry. The value obtained is larger than that of pure sol–gel derived silica but smaller than that of SBN crystal, and can be described by the Bruggeman effective medium approximation.Department of Applied PhysicsMaterials Research CentreAuthor name used in this publication: C. L. MakAuthor name used in this publication: K. H. Won

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