Iron-ion-doped barium titanate (BaTiO<SUB>3</SUB>) nanoparticles have been synthesized through a chemical route using polyvinyl alcohol. The polymer serves as a surfactant to encapsulate the cationic species in divided groups during the reaction that confines the size and morphology of the specimen. The concentration of Fe<SUP>3+</SUP> varies from 0 to 2 mol % in the specimens. The results from x-ray diffractograms and transmission electron micrographs show that the particle diameters in the specimen lie in the range 29 to 49 nm. It is seen that the ferroelectric-paraelectric phase transition temperature (T<SUB>c</SUB>) varies with the composition and the dielectric permittivity in doped specimens is enhanced by an order of magnitude compar...
The properties of nanomaterials are highly dependent on their size, morphology, crystal phase, etc.,...
In a context where the electronic is at the center of our society, the production of more compact an...
In a context where the electronic is at the center of our society, the production of more compact an...
Polystyrene-capped barium titanate (BaTiO3) nanoparticles with sizes of 11 nm and 27 nm were prepare...
Fe-doped PbTiO3 nanoparticles have been synthesized by chemical route using polyvinyl alcohol as a s...
This article reports on studies of the structure and dielectric properties of composites materials b...
A modified and convenient route using microemulsions (avoiding Ba-alkoxide) was evolved for the synt...
International audienceThe motivation of this work was to improve the dielectric properties of nano-s...
International audienceThe motivation of this work was to improve the dielectric properties of nano-s...
Barium Titanate (BaTiO3) is one of the most promising lead-free ferroelectric materials for the deve...
High resistivity in nanostructured Pb(Fe0.012Ti0.988)O3 system prepared by using polyvinyl alcohol (...
Barium titanate is used extensively as a dielectric in ceramic capacitors, particularly due to its h...
In the recent years, an immense interest has been generated on developing suitable dielectric materi...
The series of composite materials based on polystyrene and non-ferroelectric BaTiO3 nanoparticles ((...
Barium titanium oxide/polyaniline (BaTiO3/PANI) nano-composites were obtained in two different proce...
The properties of nanomaterials are highly dependent on their size, morphology, crystal phase, etc.,...
In a context where the electronic is at the center of our society, the production of more compact an...
In a context where the electronic is at the center of our society, the production of more compact an...
Polystyrene-capped barium titanate (BaTiO3) nanoparticles with sizes of 11 nm and 27 nm were prepare...
Fe-doped PbTiO3 nanoparticles have been synthesized by chemical route using polyvinyl alcohol as a s...
This article reports on studies of the structure and dielectric properties of composites materials b...
A modified and convenient route using microemulsions (avoiding Ba-alkoxide) was evolved for the synt...
International audienceThe motivation of this work was to improve the dielectric properties of nano-s...
International audienceThe motivation of this work was to improve the dielectric properties of nano-s...
Barium Titanate (BaTiO3) is one of the most promising lead-free ferroelectric materials for the deve...
High resistivity in nanostructured Pb(Fe0.012Ti0.988)O3 system prepared by using polyvinyl alcohol (...
Barium titanate is used extensively as a dielectric in ceramic capacitors, particularly due to its h...
In the recent years, an immense interest has been generated on developing suitable dielectric materi...
The series of composite materials based on polystyrene and non-ferroelectric BaTiO3 nanoparticles ((...
Barium titanium oxide/polyaniline (BaTiO3/PANI) nano-composites were obtained in two different proce...
The properties of nanomaterials are highly dependent on their size, morphology, crystal phase, etc.,...
In a context where the electronic is at the center of our society, the production of more compact an...
In a context where the electronic is at the center of our society, the production of more compact an...