Doping with other elements is one of the efficient ways to modify the physical and chemical properties of TiO2 nanomaterials. In the present work, Ni-doped TiO2 nanotubes were fabricated through anodic oxidation of NiTi alloy and further annealing treatment. The hydrogen sensing properties of the nanotube sensor were investigated. It was found that the Ni-doped TiO2 nanotubes were sensitive to an atmosphere of 1,000 ppm hydrogen, showing a good response at both room temperature and elevated temperatures. A First-Principle simulation revealed that, in comparison with pure anatase TiO2 oxide, Ni doping in the TiO2 oxide could result in a decreased bandgap. When the oxide sensor adsorbed a certain amount of hydrogen the bandgap increased and ...
Titanate nanotubes were synthesized by hydrothermal method with different NaOH concentration using v...
Arrays of nanostructured titania (NST) sensing elements have been fabricated on the wafer scale usin...
Amperometric based hydrogen peroxide (H2O2) sensor developed using a composite of Titania (TiO2) nan...
We report the hydrogen sensing properties of a sensor using TiO2 nanotube arrays. The TiO2 nanotube ...
In this work, we fabricated undoped and doped TiO2 nanotubes for investigating H2 sensor properties ...
Titania (TiO2) exists in several phases possessing different physical properties. In view of this fa...
Titania (TiO2) exists in several phases possessing different physical properties. In view of this fa...
Detection of hydrogen is crucial for industrial process control and medical applications. The prese...
Nickel modified titanium dioxide nanotubes (TiO2-NTs/Ni) and TiO2-NTs electrodes are investigated fo...
This work deals with the substantially high-temperature hydrogen sensors required by combustion and ...
Detection of hydrogen is crucial for industrial process control and medical applications where prese...
Synthesis—particularly by electrochemical anodization-, growth mechanism and chemical sensing proper...
Synthesis-particularly by electrochemical anodization-, growth mechanism and chemical sensing proper...
Detection of hydrogen is crucial for industrial process control and medical applications where the ...
Detection of hydrogen is crucial for industrial process control and medical applications where prese...
Titanate nanotubes were synthesized by hydrothermal method with different NaOH concentration using v...
Arrays of nanostructured titania (NST) sensing elements have been fabricated on the wafer scale usin...
Amperometric based hydrogen peroxide (H2O2) sensor developed using a composite of Titania (TiO2) nan...
We report the hydrogen sensing properties of a sensor using TiO2 nanotube arrays. The TiO2 nanotube ...
In this work, we fabricated undoped and doped TiO2 nanotubes for investigating H2 sensor properties ...
Titania (TiO2) exists in several phases possessing different physical properties. In view of this fa...
Titania (TiO2) exists in several phases possessing different physical properties. In view of this fa...
Detection of hydrogen is crucial for industrial process control and medical applications. The prese...
Nickel modified titanium dioxide nanotubes (TiO2-NTs/Ni) and TiO2-NTs electrodes are investigated fo...
This work deals with the substantially high-temperature hydrogen sensors required by combustion and ...
Detection of hydrogen is crucial for industrial process control and medical applications where prese...
Synthesis—particularly by electrochemical anodization-, growth mechanism and chemical sensing proper...
Synthesis-particularly by electrochemical anodization-, growth mechanism and chemical sensing proper...
Detection of hydrogen is crucial for industrial process control and medical applications where the ...
Detection of hydrogen is crucial for industrial process control and medical applications where prese...
Titanate nanotubes were synthesized by hydrothermal method with different NaOH concentration using v...
Arrays of nanostructured titania (NST) sensing elements have been fabricated on the wafer scale usin...
Amperometric based hydrogen peroxide (H2O2) sensor developed using a composite of Titania (TiO2) nan...