In this paper, we propose a facile and efficient strategy for synthesizing mesoporous BaSnO3 with a surface area as large as 67 m(2)/g using a peroxo-precursor decomposition procedure. As far as we know, this is the largest surface area reported in literature for BaSnO3 materials and may have a potential to greatly promote the technological applications of this kind of functional material in the area of chemical sensors, NOx storage, and dye-sensitized solar cells. The structure evolution of the mesoporous BaSnO3 from the precursor was followed using a series of techniques. Infrared analysis indicates large amount of protons and peroxo ligands are contained in the peroxo-precursor. Although the crystal structure of the precursor appears cub...
Barium stannate (BaSnO3) particles were synthesized using a one-step flame spray pyrolysis (FSP) met...
area: 25.6 m2/g), the radial arrangement of irregular BaSO4 nanorods, were successfully synthesized ...
Perovskite-type oxide BaSnO3 has been prepared at reduced temperature. The cubic BaSnO3 phase forms ...
In this paper, we propose a facile and efficient strategy for synthesizing mesoporous BaSnO<sub>3</s...
BaSnO3 is a cubic perovskite-type oxide that behaves as an n-type semiconductor with a wide band gap...
A BaSnO3 powder with a crystallite size of 27.6 nm has been prepared through a hydrothermal reaction...
We propose a facile and economic strategy for preparing BaSnO3 particles from a room-temperature fab...
Nanocrystalline perovskite-type BaSnO3 was obtained via microwave-assisted hydrothermal route follow...
Ceramic powders of pure barium stannate (BaSnO3) were synthesized using two wet chemical methods: co...
A nanocrystallite BaSnO3 powder with a high specific surface area was prepared by using a SnO2.xH2O ...
The compound BaSnO3 together with its Ca- and Sr-analogs, has recently been projected as potential e...
Spray pyrolysis has been found as an excellent method for the preparation of mesoporous barium sulfa...
Atomically flat terraces terminated by mostly single layer SnO2 are realized on the surface of a BaS...
Attempts to prepare BaSnO3 by the hydrothermal method starting from SnO2·xH2O gel and Ba (OH)2 solut...
Here, we report the synthesis of phase pure perforated porous BaSnO3 (BSO) nanorods and their applic...
Barium stannate (BaSnO3) particles were synthesized using a one-step flame spray pyrolysis (FSP) met...
area: 25.6 m2/g), the radial arrangement of irregular BaSO4 nanorods, were successfully synthesized ...
Perovskite-type oxide BaSnO3 has been prepared at reduced temperature. The cubic BaSnO3 phase forms ...
In this paper, we propose a facile and efficient strategy for synthesizing mesoporous BaSnO<sub>3</s...
BaSnO3 is a cubic perovskite-type oxide that behaves as an n-type semiconductor with a wide band gap...
A BaSnO3 powder with a crystallite size of 27.6 nm has been prepared through a hydrothermal reaction...
We propose a facile and economic strategy for preparing BaSnO3 particles from a room-temperature fab...
Nanocrystalline perovskite-type BaSnO3 was obtained via microwave-assisted hydrothermal route follow...
Ceramic powders of pure barium stannate (BaSnO3) were synthesized using two wet chemical methods: co...
A nanocrystallite BaSnO3 powder with a high specific surface area was prepared by using a SnO2.xH2O ...
The compound BaSnO3 together with its Ca- and Sr-analogs, has recently been projected as potential e...
Spray pyrolysis has been found as an excellent method for the preparation of mesoporous barium sulfa...
Atomically flat terraces terminated by mostly single layer SnO2 are realized on the surface of a BaS...
Attempts to prepare BaSnO3 by the hydrothermal method starting from SnO2·xH2O gel and Ba (OH)2 solut...
Here, we report the synthesis of phase pure perforated porous BaSnO3 (BSO) nanorods and their applic...
Barium stannate (BaSnO3) particles were synthesized using a one-step flame spray pyrolysis (FSP) met...
area: 25.6 m2/g), the radial arrangement of irregular BaSO4 nanorods, were successfully synthesized ...
Perovskite-type oxide BaSnO3 has been prepared at reduced temperature. The cubic BaSnO3 phase forms ...