TiO2 bulk ceramics were fabricated by using both spark plasma sintering (SPS) and the conventional sintering method (CSM). Starting materials were ultra fine rutile powders (<50 nm) prepared via the sol-gel process. CSM achieved the relative sintering density of 99.2% at 1300 °C. The grain size of 1300 °C sintered specimen was 6.5 μm. However, the sintering temperature of SPS for the density of 99.1% was as low as 760 °C, where the grain size was only 300 nm. In order to re-oxidize the Ti3+ ions due to the reducing atmosphere of the SPS process and the high temperature of the CSM process, the prepared TiO2 specimens were annealed in an oxygen atmosphere. The dielectric constant (εr) and quality factor (Q × f) of SPS-TiO2 re-oxidized specime...
High purity nanosized titanium dioxide (TiO2) powders were synthesized by precipitation method using...
Perovskite ceramics are a common microwave dielectric material, but the development and application ...
Titanium dioxide (TiO2), one of the basic ceramic materials, has found a variety of applications in ...
TiO2 bulk ceramics were fabricated by using both spark plasma sintering (SPS) and the conventional s...
Ultra fine rutile powders (below 50 nm) were prepared via the sol-gel process and bulk type TiO2 spe...
Ultra fine rutile powders (below 50 nm) were prepared via the sol-gel process and bulk type TiO2 spe...
International audienceIn this work the microwave sintering (MW) of pure submicron rutile TiO2 powder...
We report the effect of microwaves sintering on the crystal domain and electrical properties of TiO2...
Dielectric ceramics have been widely investigated and used for microwave applications such as resona...
Nanostructured (~200 nm grain size) titanium dioxide (TiO2) ceramics were densified at temperature a...
Titania (TiO2) bulk ceramics were densified at various temperatures (850°C-1200°C) by using two diff...
Microwave processing was employed to sinter commercial titania powder to obtain rutile as the major ...
For microwave applications, including mobile and satellite communications, ceramic resonators should...
The use of titania (TiO2) dielectrics for high energy density applications such as pulse-forming net...
Ba<sub>0.8</sub>Pb<sub>0.2</sub>TiO<sub>3</sub> nanocrystalline ferroelectric ceramics were prepared...
High purity nanosized titanium dioxide (TiO2) powders were synthesized by precipitation method using...
Perovskite ceramics are a common microwave dielectric material, but the development and application ...
Titanium dioxide (TiO2), one of the basic ceramic materials, has found a variety of applications in ...
TiO2 bulk ceramics were fabricated by using both spark plasma sintering (SPS) and the conventional s...
Ultra fine rutile powders (below 50 nm) were prepared via the sol-gel process and bulk type TiO2 spe...
Ultra fine rutile powders (below 50 nm) were prepared via the sol-gel process and bulk type TiO2 spe...
International audienceIn this work the microwave sintering (MW) of pure submicron rutile TiO2 powder...
We report the effect of microwaves sintering on the crystal domain and electrical properties of TiO2...
Dielectric ceramics have been widely investigated and used for microwave applications such as resona...
Nanostructured (~200 nm grain size) titanium dioxide (TiO2) ceramics were densified at temperature a...
Titania (TiO2) bulk ceramics were densified at various temperatures (850°C-1200°C) by using two diff...
Microwave processing was employed to sinter commercial titania powder to obtain rutile as the major ...
For microwave applications, including mobile and satellite communications, ceramic resonators should...
The use of titania (TiO2) dielectrics for high energy density applications such as pulse-forming net...
Ba<sub>0.8</sub>Pb<sub>0.2</sub>TiO<sub>3</sub> nanocrystalline ferroelectric ceramics were prepared...
High purity nanosized titanium dioxide (TiO2) powders were synthesized by precipitation method using...
Perovskite ceramics are a common microwave dielectric material, but the development and application ...
Titanium dioxide (TiO2), one of the basic ceramic materials, has found a variety of applications in ...