This paper describes the self-propagating high-temperature synthesis (SHS) of perovskitic oxides, specifically BaTiO3, and their subsequent densification by spark plasma sintering. With the final goal of obtaining dense nanostructured materials, SHS products were mechanically treated at different milling time conditions, before densification. It was found that the grain size of ball milled powders decreases with increasing milling time, this effect being more evident at early stages of milling. Depending upon the ball milling (BM) conditions adopted, crystallite size in the range 15-70 nm was obtained. After milling for 5 h, the resulting powders (20-30 nm) were sintered by SPS, at 700 A, for different periods of time. By properly varying s...
The rapid growth of the electronic component industry has led to a demand for miniatured multilayer ...
BaTiO3 fine powders were synthesized by hydrothermal method at 150 °C or 250 °C for 7 h, starting fr...
In a context where the electronic is at the center of our society, the production of more compact an...
This paper describes the self-propagating high-temperature synthesis (SHS) of perovskitic oxides, sp...
This paper describes the self-propagating high-temperature synthesis (SHS) of perovskitic oxides, sp...
BaTiO3 nanopowders prepared by two different wet chemical routes, one based on microemulsion-mediate...
The one-step synthesis and consolidation by Spark Plasma Sintering (SPS) of metalceramic (WC-Co) and...
Nano-powders of BaTiO3, SrTiO3, Ba0.6Sr0.4TiO3, a mixture of the composition (BaTiO3)0.6(SrTiO3)0.4 ...
International audienceBaTiO3 fine powders were synthesized by hydrothermal method at 150 °C or 250 °...
BaTiO3 was synthesized by solid state reaction between BaCO3 and TiO2 at 1150 degrees C. XRD analysi...
Highly dense barium titanate nanoceramics have been successfully prepared via a mechanical activatio...
The current work aims to reduce the energy required to obtain a high quality barium titanate nanocry...
A combination of mechanical alloying and Spark Plasma Sintering (SPS) was used to process Ba0.9Sr0.1...
Barium lead titanate ferroelectric ceramic is a promising material for electronic devices at high fr...
Barium titanate powder was prepared by soft chemical process from polymeric precursors (modified Pec...
The rapid growth of the electronic component industry has led to a demand for miniatured multilayer ...
BaTiO3 fine powders were synthesized by hydrothermal method at 150 °C or 250 °C for 7 h, starting fr...
In a context where the electronic is at the center of our society, the production of more compact an...
This paper describes the self-propagating high-temperature synthesis (SHS) of perovskitic oxides, sp...
This paper describes the self-propagating high-temperature synthesis (SHS) of perovskitic oxides, sp...
BaTiO3 nanopowders prepared by two different wet chemical routes, one based on microemulsion-mediate...
The one-step synthesis and consolidation by Spark Plasma Sintering (SPS) of metalceramic (WC-Co) and...
Nano-powders of BaTiO3, SrTiO3, Ba0.6Sr0.4TiO3, a mixture of the composition (BaTiO3)0.6(SrTiO3)0.4 ...
International audienceBaTiO3 fine powders were synthesized by hydrothermal method at 150 °C or 250 °...
BaTiO3 was synthesized by solid state reaction between BaCO3 and TiO2 at 1150 degrees C. XRD analysi...
Highly dense barium titanate nanoceramics have been successfully prepared via a mechanical activatio...
The current work aims to reduce the energy required to obtain a high quality barium titanate nanocry...
A combination of mechanical alloying and Spark Plasma Sintering (SPS) was used to process Ba0.9Sr0.1...
Barium lead titanate ferroelectric ceramic is a promising material for electronic devices at high fr...
Barium titanate powder was prepared by soft chemical process from polymeric precursors (modified Pec...
The rapid growth of the electronic component industry has led to a demand for miniatured multilayer ...
BaTiO3 fine powders were synthesized by hydrothermal method at 150 °C or 250 °C for 7 h, starting fr...
In a context where the electronic is at the center of our society, the production of more compact an...