The present work reports nitrogen doping of self-organized TiO2 nanotubular layers. Different thicknesses of the nanotubular layer architecture were formed by electrochemical anodization of Ti in different fluoride-containing electrolytes; tube lengths were 500 nm, 2.5 μm, and 6.1 μm. As-formed nanotube layers were annealed to an anatase structure and treated in ammonia environment at 550 °C to achieve nitrogen doping. The crystal structure, morphology, composition and photoresponse of the N-doped were characterized by scanning electron microscopy, x-ray diffraction, x-ray photoelectron spectroscopy, and photoelectrochemical measurements. Results clearly show that successful N-doping of the TiO2 nanotubular layers can be achieved upon ammon...
The formation of self-organized TiO2 nanotube array films by electrochemical anodizing titanium foil...
Highly ordered, anodically grown TiO2 nanotubes on titanium supports were annealed in ammonia atmosp...
Titanium oxide (TiO2) nanotubes (TNTs) have been successfully formed by anodisation of pure Titanium...
The effect of nitrogen doping by ammonilysis at different temperatures on the photoelectrochemical p...
The effect of nitrogen doping by ammonilysis at different temperatures on the photoelectrochemical p...
The effect of nitrogen doping by ammonilysis at different temperatures on the photoelectrochemical p...
The effect of nitrogen doping by ammonilysis at different temperatures on the photoelectrochemical p...
The effect of nitrogen doping by ammonilysis at different temperatures on the photoelectrochemical p...
Self-organized anodic titaniananotube layers were doped with nitrogen successfully using ion implant...
N-doped TiO2 nanotube arrays were prepared by electrochemical anodization in glycerol electrolyte, f...
Well ordered and vertically oriented titania nanotubes (TNT) are of great scientific interest due to...
Here we report on structural properties and the photo-electrochemical response of annealed TiO2 nano...
Highly ordered, anodically grown TiO2 nanotubes on titanium supports were annealed in ammonia atmosp...
Highly ordered, anodically grown TiO2 nanotubes on titanium supports were annealed in ammonia atmosp...
The formation of self-organized TiO2 nanotube array films by electrochemical anodizing titanium foil...
The formation of self-organized TiO2 nanotube array films by electrochemical anodizing titanium foil...
Highly ordered, anodically grown TiO2 nanotubes on titanium supports were annealed in ammonia atmosp...
Titanium oxide (TiO2) nanotubes (TNTs) have been successfully formed by anodisation of pure Titanium...
The effect of nitrogen doping by ammonilysis at different temperatures on the photoelectrochemical p...
The effect of nitrogen doping by ammonilysis at different temperatures on the photoelectrochemical p...
The effect of nitrogen doping by ammonilysis at different temperatures on the photoelectrochemical p...
The effect of nitrogen doping by ammonilysis at different temperatures on the photoelectrochemical p...
The effect of nitrogen doping by ammonilysis at different temperatures on the photoelectrochemical p...
Self-organized anodic titaniananotube layers were doped with nitrogen successfully using ion implant...
N-doped TiO2 nanotube arrays were prepared by electrochemical anodization in glycerol electrolyte, f...
Well ordered and vertically oriented titania nanotubes (TNT) are of great scientific interest due to...
Here we report on structural properties and the photo-electrochemical response of annealed TiO2 nano...
Highly ordered, anodically grown TiO2 nanotubes on titanium supports were annealed in ammonia atmosp...
Highly ordered, anodically grown TiO2 nanotubes on titanium supports were annealed in ammonia atmosp...
The formation of self-organized TiO2 nanotube array films by electrochemical anodizing titanium foil...
The formation of self-organized TiO2 nanotube array films by electrochemical anodizing titanium foil...
Highly ordered, anodically grown TiO2 nanotubes on titanium supports were annealed in ammonia atmosp...
Titanium oxide (TiO2) nanotubes (TNTs) have been successfully formed by anodisation of pure Titanium...