Barium titanate (BT) ceramics with Ba/Ti ratios of 0.95 and 1.00 were synthesized using spark plasma sintering (SPS) technique. Dielectric spectroscopy (frequency range from 40 Hz to 1MHz and temperature range from 300K to 30K) was performed on those ceramics (SPS BT). SPS BT showed extremely high permittivity up to ~10⁵, can be referred to as colossal permittivity, with relatively low dielectric loss of ~0.05. Data analyses following Debye relaxation and universal dielectric response models indicate that the origin of colossal permittivity in BT ceramics is the result of a hopping polaron within semiconducting grains in combination with interfacial polarization at the insulating grain boundary. Furthermore, the contributions of each polari...
With the promise of electronics breakthrough, giant dielectric permittivity materials are under deep...
We report ultrahigh dielectric and piezoelectric properties in BaTiO3-xBaSnO3 ceramics at its quasi-...
BaTiO3 nanopowders prepared by two different wet chemical routes, one based on microemulsion-mediate...
Microstructure, crystal parameters, and electrophysical properties of dielectric and semiconductor c...
BaTiO3−x and Ba0.95La0.05TiO3−x nanoceramics showing colossal permittivity values have been characte...
Development of microelectronic devices is driven by a large demand for faster and smaller systems. I...
In pursuit of high permittivity materials for electronic application, there has been a considerable ...
Highly dense barium titanate nanoceramics have been successfully prepared via a mechanical activatio...
Dielectric properties of pure phase BaTi0.99(Nb0.5Ga0.5)(0.02)O-3 ceramics, prepared via a conventio...
Spark-plasma-sintering (SPS) has been applied to BaYiO(3) to prepare dense ceramics consisting of su...
Spark-plasma-sintering (SPS) has been applied to BaYiO(3) to prepare dense ceramics consisting of su...
International audienceThe oxalate route offers a controlled approach to synthesize pure Ba1–xSrxTiO3...
Grain size effects on the physical properties of polycrystalline ferroelectrics have been extensivel...
Grain size effects on the physical properties of polycrystalline ferroelectrics have been extensivel...
With the promise of electronics breakthrough, giant dielectric permittivity materials are under deep...
With the promise of electronics breakthrough, giant dielectric permittivity materials are under deep...
We report ultrahigh dielectric and piezoelectric properties in BaTiO3-xBaSnO3 ceramics at its quasi-...
BaTiO3 nanopowders prepared by two different wet chemical routes, one based on microemulsion-mediate...
Microstructure, crystal parameters, and electrophysical properties of dielectric and semiconductor c...
BaTiO3−x and Ba0.95La0.05TiO3−x nanoceramics showing colossal permittivity values have been characte...
Development of microelectronic devices is driven by a large demand for faster and smaller systems. I...
In pursuit of high permittivity materials for electronic application, there has been a considerable ...
Highly dense barium titanate nanoceramics have been successfully prepared via a mechanical activatio...
Dielectric properties of pure phase BaTi0.99(Nb0.5Ga0.5)(0.02)O-3 ceramics, prepared via a conventio...
Spark-plasma-sintering (SPS) has been applied to BaYiO(3) to prepare dense ceramics consisting of su...
Spark-plasma-sintering (SPS) has been applied to BaYiO(3) to prepare dense ceramics consisting of su...
International audienceThe oxalate route offers a controlled approach to synthesize pure Ba1–xSrxTiO3...
Grain size effects on the physical properties of polycrystalline ferroelectrics have been extensivel...
Grain size effects on the physical properties of polycrystalline ferroelectrics have been extensivel...
With the promise of electronics breakthrough, giant dielectric permittivity materials are under deep...
With the promise of electronics breakthrough, giant dielectric permittivity materials are under deep...
We report ultrahigh dielectric and piezoelectric properties in BaTiO3-xBaSnO3 ceramics at its quasi-...
BaTiO3 nanopowders prepared by two different wet chemical routes, one based on microemulsion-mediate...