Reliable environmental monitoring requires cost effective but highly sensitive and selective gas sensors. While the sensitivity of the sensors is improved by reducing the characteristic dimensions of the gas-sensing material, the selectivity is often approached by combining the sensors into multisensor arrays. The development of scalable methods to manufacture such arrays based on low-dimensional structures offers new perspectives for gas sensing applications. Here we examine an approach to produce multisensor array chips based on the TiO$_{x}$ nanotube layers segmented by multiple Pt strip electrodes. We study the sensitivity and selectivity of the developed chip at operating temperatures up to 400 °C towards organic vapors in the ppm rang...
Relying on its unique properties, titanium dioxide is employed in a versatility of applications, gas...
AbstractPure TiO2 and TiO2<Nb> nanotubular arrays were successfully sensitized. Nanotubular arrays w...
Engineering: 2nd Place (The Ohio State University Denman Undergraduate Research Forum)Titanium dioxi...
The preparation and structural characterization of titanium oxide nanowires as functional materials ...
AbstractOur work reports the growth of two-phase (anatase-rutile) TiO2 nanotubes and the investigati...
AbstractWe studied growth process of TiO2 nanotubes and investigated their gas sensing properties us...
AbstractWe fabricated porous gas sensing films composed of TiO2 nanotubes prepared by a hydrothermal...
Synthesis-particularly by electrochemical anodization-, growth mechanism and chemical sensing proper...
Titania (TiO2) exists in several phases possessing different physical properties. In view of this fa...
We propose a Ti wire functionalized with inherent anatase TiO2 nanotubes by an anodization process t...
TiO2 nanotubes were used to prepare gas sensor and the gas sensing properties towards toluene were a...
Pure TiO 2 and TiO 2 nanotubular arrays were successfully sensitized. Nanotubular arrays were prepar...
Mechanisms of gas sensing in sensors based on multi-wall carbon nanotubes decorated by Ti nanopartic...
Multi-wall carbon nanotubes decorated by Ti nanoparticles were used for gas (N2, Ar, O2) sensing at ...
Synthesis—particularly by electrochemical anodization-, growth mechanism and chemical sensing proper...
Relying on its unique properties, titanium dioxide is employed in a versatility of applications, gas...
AbstractPure TiO2 and TiO2<Nb> nanotubular arrays were successfully sensitized. Nanotubular arrays w...
Engineering: 2nd Place (The Ohio State University Denman Undergraduate Research Forum)Titanium dioxi...
The preparation and structural characterization of titanium oxide nanowires as functional materials ...
AbstractOur work reports the growth of two-phase (anatase-rutile) TiO2 nanotubes and the investigati...
AbstractWe studied growth process of TiO2 nanotubes and investigated their gas sensing properties us...
AbstractWe fabricated porous gas sensing films composed of TiO2 nanotubes prepared by a hydrothermal...
Synthesis-particularly by electrochemical anodization-, growth mechanism and chemical sensing proper...
Titania (TiO2) exists in several phases possessing different physical properties. In view of this fa...
We propose a Ti wire functionalized with inherent anatase TiO2 nanotubes by an anodization process t...
TiO2 nanotubes were used to prepare gas sensor and the gas sensing properties towards toluene were a...
Pure TiO 2 and TiO 2 nanotubular arrays were successfully sensitized. Nanotubular arrays were prepar...
Mechanisms of gas sensing in sensors based on multi-wall carbon nanotubes decorated by Ti nanopartic...
Multi-wall carbon nanotubes decorated by Ti nanoparticles were used for gas (N2, Ar, O2) sensing at ...
Synthesis—particularly by electrochemical anodization-, growth mechanism and chemical sensing proper...
Relying on its unique properties, titanium dioxide is employed in a versatility of applications, gas...
AbstractPure TiO2 and TiO2<Nb> nanotubular arrays were successfully sensitized. Nanotubular arrays w...
Engineering: 2nd Place (The Ohio State University Denman Undergraduate Research Forum)Titanium dioxi...