Structure and electric properties of cerium substituted SrBi1.8Ce0.2Nb2O9 and SrBi1.8Ce0.2Ta2O9 ceramics

Author:

Afqir Mohamed1,Tachafine Amina2,Fasquelle Didier2,Elaatmani Mohamed3,Carru Jean-Claude2,Zegzouti Abdelouahad3,Daoud Mohamed3

Affiliation:

1. Université Cadi Ayyad, Faculté des Sciences Semlalia, Laboratoire des Sciences des Matériaux Inorganiques et leurs Applications, Marrakech, Morocco + Université du Littoral Côte d’Opale, Unité de Dynamique et Structure des Matériaux Moléculaires, Calais,

2. Université du Littoral Côte d’Opale, Unité de Dynamique et Structure des Matériaux Moléculaires, Calais, France

3. Université Cadi Ayyad, Faculté des Sciences Semlalia, Laboratoire des Sciences des Matériaux Inorganiques et leurs Applications, Marrakech, Morocco

Abstract

SrBi1.8Ce0.2Nb2O9 (SBCN) and SrBi1.8Ce0.2Ta2O9 (SBCT) powders were prepared via solid-state reaction method. X-ray diffraction analysis reveals that the SBCN and SBCT powders have the single phase orthorhom-bic Aurivillius structure at room temperature. The contribution of Raman scattering and FTIR spectroscopy of these samples were relatively smooth and resemble each other. The calcined powders were uniaxially pressed and sintered at 1250?C for 8 h to obtaine dense ceramics. Dielectric constant, loss tangent and AC conductivity of the sintered Ce-doped SrBi2Nb2O9 and SrBi2Ta2O9 ceramics were measured by LCR meter. The Ce-doped SBN (SBCN) ceramics have a higher Curie temperature (TC) and dielectric constant at TC (380?C and ?? ~3510) compared to the Ce-doped SBT (SBCT) ceramics (330?C and ?? ~115) when measured at 100Hz. However, the Ce-doped SBT (SBCT) ceramics have lower conductivity and dielectric loss.

Publisher

National Library of Serbia

Subject

Ceramics and Composites

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