Fine powders of submicron-sized crystallites of BaTiO3 were prepared at 85–130°C by the hydrothermal method, starting from TiO2.ξH2O gel and Ba(OH)2 solution. The products obtained below 110°C incorporated considerable amounts of H2O and OH− in the lattice. As-prepared BaTiO3 is cubic and converts to the tetragonal phase after heat treatment at 1200°C, accompanied by the loss of residual OH− ions. Hydrothermal reaction of SnO2.ξH2O gel with Ba(OH)2 at 150–260°C gives rise to the hydrated phase, BaSn(OH)6.3H2O, due to the amphoteric nature of SnO2.ξH2O which stabilises Sn(OH)62− anions in basic media. On heating in air or releasing the pressure in situ at 260°C, BaSn(OH)6.3H2O converts to BaSnO3 through an intermediate, BaSnO(OH)4. Solid sol...
Polycrystalline samples BaTiO3 and the solid solutions Ba0.9 Sr0.1 TiO3, 0.9 Sr0.1 Ti0.9 Sn0.1 O3, ...
Barium titanate (BaTiO3) powders with particle sizes about 50 nm in diameter were synthesized using ...
Barium Titanate (BaTiO3) is one of the most promising lead-free ferroelectric materials for the deve...
Fine powders of submicron-sized crystallites of BaTiO3 were prepared at 85–130°C by the hydrothermal...
Attempts to prepare BaSnO3 by the hydrothermal method starting from SnO2·xH2O gel and Ba (OH)2 solut...
Fine powders consisting of aggregated submicron crystallites of Ba(Ti,Zr)O3 in the complete range o...
BaTiO3 fine powders were synthesized by hydrothermal method at 150 °C or 250 °C for 7 h, starting fr...
© 2015 Author(s). Two low-cost chemical methods of sol-gel and the hydrothermal process have been st...
A detailed evaluation of size, shape and microstrains of BaTiO3 crystallites produced by hydrotherm...
[[abstract]]A hydrothermal process has been successfully utilized for the preparation of Hollandite-...
The influence of different processing parameters and various Ba2+ addition (up to 10 mol%) on the st...
[[abstract]]©2006 Elsevier - A hydrothermal process has been successfully utilized for the preparati...
The synthesis of ultrafine BaTiO3 particles by a reaction between fine TiO2 particles and a strongly...
Barium strontium titanate (BST) solid-solution oxides represent an important class of ferroelectric ...
Hydrothermal processing facilitates the synthesis of crystalline ceramic materials of varying compos...
Polycrystalline samples BaTiO3 and the solid solutions Ba0.9 Sr0.1 TiO3, 0.9 Sr0.1 Ti0.9 Sn0.1 O3, ...
Barium titanate (BaTiO3) powders with particle sizes about 50 nm in diameter were synthesized using ...
Barium Titanate (BaTiO3) is one of the most promising lead-free ferroelectric materials for the deve...
Fine powders of submicron-sized crystallites of BaTiO3 were prepared at 85–130°C by the hydrothermal...
Attempts to prepare BaSnO3 by the hydrothermal method starting from SnO2·xH2O gel and Ba (OH)2 solut...
Fine powders consisting of aggregated submicron crystallites of Ba(Ti,Zr)O3 in the complete range o...
BaTiO3 fine powders were synthesized by hydrothermal method at 150 °C or 250 °C for 7 h, starting fr...
© 2015 Author(s). Two low-cost chemical methods of sol-gel and the hydrothermal process have been st...
A detailed evaluation of size, shape and microstrains of BaTiO3 crystallites produced by hydrotherm...
[[abstract]]A hydrothermal process has been successfully utilized for the preparation of Hollandite-...
The influence of different processing parameters and various Ba2+ addition (up to 10 mol%) on the st...
[[abstract]]©2006 Elsevier - A hydrothermal process has been successfully utilized for the preparati...
The synthesis of ultrafine BaTiO3 particles by a reaction between fine TiO2 particles and a strongly...
Barium strontium titanate (BST) solid-solution oxides represent an important class of ferroelectric ...
Hydrothermal processing facilitates the synthesis of crystalline ceramic materials of varying compos...
Polycrystalline samples BaTiO3 and the solid solutions Ba0.9 Sr0.1 TiO3, 0.9 Sr0.1 Ti0.9 Sn0.1 O3, ...
Barium titanate (BaTiO3) powders with particle sizes about 50 nm in diameter were synthesized using ...
Barium Titanate (BaTiO3) is one of the most promising lead-free ferroelectric materials for the deve...