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Dielectric Properties and Phase Transitions of Ba(Ti<sub>1-x</sub>Sn<sub>x</sub>)O<sub>3</sub> Solid Solution
160
Citations
11
References
1996
Year
Materials ScienceDielectric PropertiesMultiferroicsEngineeringPhysicsFerroelectric ApplicationDielectric DispersionApplied PhysicsQuantum MaterialsCondensed Matter PhysicsFerroelectric MaterialsSuperconductivitySolid-state ChemistryElectrical PropertyDiffuse Phase TransitionSolid-state Physic
In Ba(Ti 1- x Sn x )O 3 solid solution, for Sn concentration x ≤0.1, the permittivity follows the Curie-Weiss law above the Curie point T c . The increase in the peak value of the permittivity at T c is due to the change in ferroelectric transition from first order to second order with increasing x . For x >0.1, some deviations from the Curie-Weiss law are observed in a narrow temperature region above T c . The diffuse phase transition was observed. For x >0.2, the Curie-Weiss law does not hold over a wide temperature range. The dielectric dispersion was observed in the radio-frequency range (10 kHz–10 MHz). With increasing Sn concentration, the change in the phase transition from a normal ferroelectric transition to relaxor through the diffuse phase transition was observed.
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