In this study, we have investigated the thickness-dependent nitrogen dioxide (NO2) sensing characteristics of a reactive-ion magnetron sputtered tungsten trioxide (WO3) film, followed by morphological and electrical characterizations. Subsequently, the sensing material was integrated with an MEMS platform to develop a sensor chip to integrate with electronics for portable applications. Sputtered films are studied for their sensing performance under different operating conditions to discover the optimum thickness of the film for integrating it with a CMOS platform. The optimized film thickness of similar to 85 nm shows the 16 ppb lower limit of detection and 39 ppb detection precision at the optimum 150 degrees C operating temperature. The f...
Indium tin oxide (ITO) thin films of different thicknesses are grown on the corning glass substrates...
Thin film nanostructured gas sensors typically operate at temperatures above 400°C, but lower temper...
A comparative investigation of gas sensing properties of SnO2 doped with WO3 based on thin film and ...
In this study, we have investigated the thickness-dependent nitrogen dioxide (NO2) sensing character...
10.1016/j.snb.2012.03.037Tungsten trioxide (WO 3) thin films were prepared by magnetron sputtering o...
Tungsten oxide (WO3) thin films for gas sensing have been successfully deposited using reactive dire...
Tungsten oxide (WO3) thin films for gas sensing have been successfully deposited using reactive dire...
Tungsten oxide (WO3) thin films for gas sensing have been successfully deposited using reactive dire...
Tungsten trioxide (W03) nanoplatelets were obtained by etching sputtered W thin films in a 0.5M nitr...
Nitrogen dioxide (NO2) is a major air pollutant resulting in respiratory problems, from wheezing, co...
Silicon-based microdevices for NO2 detection and DNA amplification have been developed using bulk an...
We describe the preparation of thin films of Ti---WO3 obtained by means of r.f. sputtering depositio...
AbstractTo fabricate more excellent NO2 sensor with high sensor response and good linearity between ...
WO3 has been proved to be a great material for NO2 sensing [1,2]. This n-type semiconductor needs h...
A comparative investigation of gas sensing properties of SnO2 doped with WO3 based on thin film and ...
Indium tin oxide (ITO) thin films of different thicknesses are grown on the corning glass substrates...
Thin film nanostructured gas sensors typically operate at temperatures above 400°C, but lower temper...
A comparative investigation of gas sensing properties of SnO2 doped with WO3 based on thin film and ...
In this study, we have investigated the thickness-dependent nitrogen dioxide (NO2) sensing character...
10.1016/j.snb.2012.03.037Tungsten trioxide (WO 3) thin films were prepared by magnetron sputtering o...
Tungsten oxide (WO3) thin films for gas sensing have been successfully deposited using reactive dire...
Tungsten oxide (WO3) thin films for gas sensing have been successfully deposited using reactive dire...
Tungsten oxide (WO3) thin films for gas sensing have been successfully deposited using reactive dire...
Tungsten trioxide (W03) nanoplatelets were obtained by etching sputtered W thin films in a 0.5M nitr...
Nitrogen dioxide (NO2) is a major air pollutant resulting in respiratory problems, from wheezing, co...
Silicon-based microdevices for NO2 detection and DNA amplification have been developed using bulk an...
We describe the preparation of thin films of Ti---WO3 obtained by means of r.f. sputtering depositio...
AbstractTo fabricate more excellent NO2 sensor with high sensor response and good linearity between ...
WO3 has been proved to be a great material for NO2 sensing [1,2]. This n-type semiconductor needs h...
A comparative investigation of gas sensing properties of SnO2 doped with WO3 based on thin film and ...
Indium tin oxide (ITO) thin films of different thicknesses are grown on the corning glass substrates...
Thin film nanostructured gas sensors typically operate at temperatures above 400°C, but lower temper...
A comparative investigation of gas sensing properties of SnO2 doped with WO3 based on thin film and ...