Low-power and selective H2S gas sensors based on tungsten oxide (WO3) nanoparticles (NPs) embedded in organic polymer membranes are presented in this study. WO3 NPs were synthesized using the sol-gel method. Polymer solutions consisting of poly-vinyl-alcohol (PVA) and ionic liquid (IL) were doped with WO3 NPs. Then, the doped solutions were casted to obtain flexible membranes (200�?m in thickness). The sensors (PVA-IL-WO3 NPs membranes) were tested to investigate their gas sensing performance by measuring the electrical current response signals at different operating temperatures. The result revealed that the best response to H2S gas for all sensors was obtained at 80��C, yet a reasonable response was noticed at a low operating temperature ...
Polyaniline (PAni)-tungsten oxide (WO3) hybrid nanocomposites sensor have been lucratively synthesiz...
AbstractWe present a micromachined gas sensor which can detect dilute NH3 gas at ppb (parts per bill...
In this present study, the fabricated sensors based on WO3 nanowires sensing films were grown by the...
Lower power consumption and higher performance are compelling demands in the electronic systems moti...
Organic-inorganic hybrid material is one of the most promising materials for high performance gas se...
A room temperature (RT) H2S gas sensor based on organic–inorganic nanocomposites has been developed ...
We report on H2S gas sensors based on CuO nanoparticles that are embedded within polymer membranes o...
The rapid increase in environmental pollution has become a major concern, and its monitoring has evo...
Tungsten trioxide is a material with a variety of application areas. For example, the material is us...
This paper compares the H2S gas sensing properties of CuO-functionalized WO3 nanowires with those of...
Nitrogen dioxide (NO2) has been identified as a serious air pollutant that threats to our environmen...
The inspiration behind this research is the development of tungsten oxide (WO3) nanowires based, hig...
In this work, we report a remarkably improved toluene response and superior cross-sensitivity agains...
Nanoparticles and nanoplatelets of WO3 and nanowires of WO2.72 have been investigated for their H2S-...
This paper reports the development of nanoporous tungsten trioxide (WO3) Schottky diode-based gas se...
Polyaniline (PAni)-tungsten oxide (WO3) hybrid nanocomposites sensor have been lucratively synthesiz...
AbstractWe present a micromachined gas sensor which can detect dilute NH3 gas at ppb (parts per bill...
In this present study, the fabricated sensors based on WO3 nanowires sensing films were grown by the...
Lower power consumption and higher performance are compelling demands in the electronic systems moti...
Organic-inorganic hybrid material is one of the most promising materials for high performance gas se...
A room temperature (RT) H2S gas sensor based on organic–inorganic nanocomposites has been developed ...
We report on H2S gas sensors based on CuO nanoparticles that are embedded within polymer membranes o...
The rapid increase in environmental pollution has become a major concern, and its monitoring has evo...
Tungsten trioxide is a material with a variety of application areas. For example, the material is us...
This paper compares the H2S gas sensing properties of CuO-functionalized WO3 nanowires with those of...
Nitrogen dioxide (NO2) has been identified as a serious air pollutant that threats to our environmen...
The inspiration behind this research is the development of tungsten oxide (WO3) nanowires based, hig...
In this work, we report a remarkably improved toluene response and superior cross-sensitivity agains...
Nanoparticles and nanoplatelets of WO3 and nanowires of WO2.72 have been investigated for their H2S-...
This paper reports the development of nanoporous tungsten trioxide (WO3) Schottky diode-based gas se...
Polyaniline (PAni)-tungsten oxide (WO3) hybrid nanocomposites sensor have been lucratively synthesiz...
AbstractWe present a micromachined gas sensor which can detect dilute NH3 gas at ppb (parts per bill...
In this present study, the fabricated sensors based on WO3 nanowires sensing films were grown by the...