Supercapacitor behavior has been reported in a number of oxides including reduced BaTiO3 ferroelectric ceramics. These so-called giant properties are however not easily controlled. We show here that the continuous coating of individual BaTiO3 grains by a silica shell in combination with spark plasma sintering is a way to process bulk composites having supercapacitor features with low dielectric losses and temperature stability. The silica shell acts both as an oxidation barrier during the processing and as a dielectric barrier in the final composite
Spark plasma sintering SPS is an efficient tool to obtain highly densified ferroelectric-dielectric ...
The dielectric properties of the solid solution Ba1−x Sr x TiO3−δ (0 ≤ x ≤ 1) have been investigated...
The BaTiO3 ceramics applications based on electronic properties have very high gradient scientific a...
Supercapacitor behavior has been reported in a number of oxides including reduced BaTiO3 ferroelectr...
We report a quite general way to design materials with tailored properties by combining thermolysis ...
With the promise of electronics breakthrough, giant dielectric permittivity materials are under deep...
Dielectrics with a high and weakly- temperature-dependent permittivity are highly desirable for the ...
High permittivity ceramics with $\epsilon_{eff} > 10^5$ can be realized from semiconducting $BaTiO_3...
We report, for first time, how electric fields influence the sintering of undoped BaTiO3, a ferroele...
The miniaturisation of electronic components required for many devices involves an increase their vo...
In pursuit of high permittivity materials for electronic application, there has been a considerable ...
We show how a simple bilayer system that combines a layer of undoped BaTiO3 (BT) with a second layer...
All-oxide composites are increasingly investigated in the field of microelectronics and telecommunic...
International audienceDielectric materials with colossal permittivity show promise for the developme...
Ceramic dielectrics are reported with superior energy storage performance for applications, such as ...
Spark plasma sintering SPS is an efficient tool to obtain highly densified ferroelectric-dielectric ...
The dielectric properties of the solid solution Ba1−x Sr x TiO3−δ (0 ≤ x ≤ 1) have been investigated...
The BaTiO3 ceramics applications based on electronic properties have very high gradient scientific a...
Supercapacitor behavior has been reported in a number of oxides including reduced BaTiO3 ferroelectr...
We report a quite general way to design materials with tailored properties by combining thermolysis ...
With the promise of electronics breakthrough, giant dielectric permittivity materials are under deep...
Dielectrics with a high and weakly- temperature-dependent permittivity are highly desirable for the ...
High permittivity ceramics with $\epsilon_{eff} > 10^5$ can be realized from semiconducting $BaTiO_3...
We report, for first time, how electric fields influence the sintering of undoped BaTiO3, a ferroele...
The miniaturisation of electronic components required for many devices involves an increase their vo...
In pursuit of high permittivity materials for electronic application, there has been a considerable ...
We show how a simple bilayer system that combines a layer of undoped BaTiO3 (BT) with a second layer...
All-oxide composites are increasingly investigated in the field of microelectronics and telecommunic...
International audienceDielectric materials with colossal permittivity show promise for the developme...
Ceramic dielectrics are reported with superior energy storage performance for applications, such as ...
Spark plasma sintering SPS is an efficient tool to obtain highly densified ferroelectric-dielectric ...
The dielectric properties of the solid solution Ba1−x Sr x TiO3−δ (0 ≤ x ≤ 1) have been investigated...
The BaTiO3 ceramics applications based on electronic properties have very high gradient scientific a...