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Doping effect in layer structured SrBi2Nb2O9 ferroelectrics
162
Citations
40
References
2001
Year
Materials ScienceMaterials EngineeringMultiferroicsCrystal StructureSrbi2nb2o9 FerroelectricsEngineeringFerroelectric ApplicationFerroelasticsStructural ConstraintTransition Metal ChalcogenidesApplied PhysicsSuperconductivityQuantum MaterialsSemiconductor MaterialIonic Radii
This article reports a systematic study of doping effects on the crystal structure, microstructure, dielectric, and electrical properties of layer-structured strontium bismuth niobate, SrBi2Nb2O9 (SBN), ferroelectrics. Substitution in both the A site (Sr2+ by Ca2+ and Ba2+) and B site (Nb5+ by V5+) up to 30 at % were studied. It was found that crystal lattice constant, dielectric, and electrical properties of SBN ferroelectrics varied appreciably with the type and amount of dopants. The relationships among the ionic radii, structural constraint imposed by [Bi2O2]2+ interlayers, and properties were discussed.
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