N-doped TiO2 nanotube arrays were prepared by electrochemical anodization in glycerol electrolyte, followed by electrochemical deposition in NH4Cl solution. An orthogonal experiment was used to optimize the doping conditions. Electrolyte concentration, reaction voltage, and reaction time were the main factors to influence the N-doping effect which was the determinant of the visible range photoresponse. The optimal N-doping conditions were determined as follows: reaction voltage is 3 V, reaction time is 2 h, and electrolyte concentration is 0.5 M. The maximal photocurrent enhanced ratio was 30% under white-light irradiation. About 58% improvement of photocatalytic efficiency was achieved in the Rhodamine B degradation experiment by N doping....
Self-organized anodic titaniananotube layers were doped with nitrogen successfully using ion implant...
Titanium oxide (TiO2) nanotubes (TNTs) have been successfully formed by anodisation of pure Titanium...
Highly ordered TiO2 nanotube arrays were successfully fabricated using ethanol and water mixture ele...
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...
Highly ordered nitrogen-doped titanium dioxide (N-doped TiO2) nanotube array films with enhanced pho...
The present work reports nitrogen doping of self-organized TiO2 nanotubular layers. Different thickn...
Nitrogen-doped TiO2 nanotube arrays (N-TNAs) were successfully fabricated by a simple thermal anneal...
Highly ordered iron, nitrogen, and fluorine tri-doped TiO2 (Fe, (N, F)-TiO2) nanotube arrays were su...
Highly ordered TiO2 nanotube (TiO2 NT) arrays were prepared by anodic oxidizing method on the surfac...
In this investigation, a new, facile, low cost and environmental-friendly method was introduced to f...
In this investigation, a new, facile, low cost and environmental-friendly method was introduced to f...
Self-organized anodic titaniananotube layers were doped with nitrogen successfully using ion implant...
Titanium oxide (TiO2) nanotubes (TNTs) have been successfully formed by anodisation of pure Titanium...
Highly ordered TiO2 nanotube arrays were successfully fabricated using ethanol and water mixture ele...
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...
Highly ordered nitrogen-doped titanium dioxide (N-doped TiO2) nanotube array films with enhanced pho...
The present work reports nitrogen doping of self-organized TiO2 nanotubular layers. Different thickn...
Nitrogen-doped TiO2 nanotube arrays (N-TNAs) were successfully fabricated by a simple thermal anneal...
Highly ordered iron, nitrogen, and fluorine tri-doped TiO2 (Fe, (N, F)-TiO2) nanotube arrays were su...
Highly ordered TiO2 nanotube (TiO2 NT) arrays were prepared by anodic oxidizing method on the surfac...
In this investigation, a new, facile, low cost and environmental-friendly method was introduced to f...
In this investigation, a new, facile, low cost and environmental-friendly method was introduced to f...
Self-organized anodic titaniananotube layers were doped with nitrogen successfully using ion implant...
Titanium oxide (TiO2) nanotubes (TNTs) have been successfully formed by anodisation of pure Titanium...
Highly ordered TiO2 nanotube arrays were successfully fabricated using ethanol and water mixture ele...