Stoichiometric tungsten oxide (WO3) nanorods are synthesized on tungsten ( W) substrates by a high- temperature, catalyst- free, physical deposition process and by subsequent annealing in oxygen atmosphere. Tungsten oxide nanorods are grown by thermal evaporation of WO3 powder at elevated temperature in a tube furnace. XRD, TEM and XPS analysis shows that the as-grown nanorods are single crystalline and non-stoichiometric ( WOx). Annealing of WOx nanorods at 700 degrees C under oxygen atmosphere has led to the formation of stoichiometric WO3 as evidenced by XRD, XPS and Raman analysis.X1147sciescopu
Tungsten oxide nanowires have been synthesized by vacuum annealing in the range 500-710 °C from amor...
International audienceTungsten oxide nanorods are grown at atmospheric pressure and low temperature ...
Tungsten oxide nanopowders and nanorods were synthesized by using a modified plasma arc gas condensa...
Arrays of tungsten oxide nanorods, approximately 500 nm in diameter and 10 mu m in length, have been...
Arrays of tungsten oxide nanorods, approximately 500 nm in diameter and 10 μm in length, have been g...
A new method is developed to obtain crystalline nanorods Of WO3 using tungsten organometallic compou...
AbstractTungsten oxide (WO3) nanorods array prepared using chemical vapor deposition techniques was ...
A simple vapour deposition technique was used to prepare WO3 one-dimensional nanostructures. WO3 is ...
We report the synthesis of tungsten oxide W 18O 49 nanowires by thermal evaporation at low temperatu...
Tungsten oxide (W18O49) nanorods were grown by directly heating tungsten foils covered with potassiu...
A simple vapour deposition technique was used to prepare WO3 one-dimensional nanostructures.WO3 is s...
A simple process enables to synthesize tungsten oxide with var-ious nanomorphologies, i.e. nanorods,...
Herein, the growth of substoichiometric tungsten oxide (WO3–x) nanowires (NWs) via thermal oxidation...
Room-temperature tungsten oxide sensors were prepared by using a solution containing single-crystall...
Tungsten oxide nanowires with controllable diameter were synthesized on Si substrates by thermal eva...
Tungsten oxide nanowires have been synthesized by vacuum annealing in the range 500-710 °C from amor...
International audienceTungsten oxide nanorods are grown at atmospheric pressure and low temperature ...
Tungsten oxide nanopowders and nanorods were synthesized by using a modified plasma arc gas condensa...
Arrays of tungsten oxide nanorods, approximately 500 nm in diameter and 10 mu m in length, have been...
Arrays of tungsten oxide nanorods, approximately 500 nm in diameter and 10 μm in length, have been g...
A new method is developed to obtain crystalline nanorods Of WO3 using tungsten organometallic compou...
AbstractTungsten oxide (WO3) nanorods array prepared using chemical vapor deposition techniques was ...
A simple vapour deposition technique was used to prepare WO3 one-dimensional nanostructures. WO3 is ...
We report the synthesis of tungsten oxide W 18O 49 nanowires by thermal evaporation at low temperatu...
Tungsten oxide (W18O49) nanorods were grown by directly heating tungsten foils covered with potassiu...
A simple vapour deposition technique was used to prepare WO3 one-dimensional nanostructures.WO3 is s...
A simple process enables to synthesize tungsten oxide with var-ious nanomorphologies, i.e. nanorods,...
Herein, the growth of substoichiometric tungsten oxide (WO3–x) nanowires (NWs) via thermal oxidation...
Room-temperature tungsten oxide sensors were prepared by using a solution containing single-crystall...
Tungsten oxide nanowires with controllable diameter were synthesized on Si substrates by thermal eva...
Tungsten oxide nanowires have been synthesized by vacuum annealing in the range 500-710 °C from amor...
International audienceTungsten oxide nanorods are grown at atmospheric pressure and low temperature ...
Tungsten oxide nanopowders and nanorods were synthesized by using a modified plasma arc gas condensa...