We have designed a new ternary structure to enhance the sensing properties of WS2 nanosheet (NS)-based gas sensors at room temperature (RT) in self-heating mode. SnO2 nanowires (NWs, 10–30 wt%) were added to WS2 NSs and then Au nanoparticles (NPs) were deposited on the surface of the resulting composites by UV irradiation. The Au-decorated 10 wt% SnO2–WS2 composition showed the highest gas sensing properties. The presence of SnO2 NWs on the WS2 NSs effectively enhanced the diffusion and adsorption of gas species into deeper parts of the gas sensor. Furthermore, the chemical sensitization of Au (increase in oxygen ionosorption; spillover effect and catalytic effect towards CO) contributed to an enhanced response to CO gas. Gas sensing tests ...
Optical excitation is widely acknowledged as one of the most effective means of balancing sensor res...
This paper compares the H2S gas sensing properties of CuO-functionalized WO3 nanowires with those of...
A highly sensitive and fast responding CO sensor was fabricated from a sheet-like SnO2. The SnO shee...
Abstract We report the effect of the fabric of the surface microstructure on the CO gas sensing prop...
The H2S gas sensing characterization of gas sensors based on the SnO2 nanowires network has been rep...
Au/SnO2 core-shell structure nanoparticles (NPs) with different shell thicknesses as a CO gas sensin...
The long duration of a working device with a limited battery capacity requires gas sensors with low ...
Developing metal oxide gas sensors for internet-of-things (IoT) and portable applications require lo...
We fabricated a nanowire-based gas sensor using a simple method of growing SnO(2) nanowires bridging...
Tin oxide (SnO₂) nanowires were synthesized by a molecule based chemical vapour deposition process a...
The results of research aimed at the gas sensing nanowires (NWs) engineering are presented. Structur...
Abstract – The results of research aimed at the gas sensing nanowires (NWs) engineering are presente...
Metal decoration on hollow metal oxide nanostructures is an attractive route to enhance gas sensing ...
In this present study, the fabricated sensors based on WO3 nanowires sensing films were grown by the...
We fabricated SnO2/cobalt (Co) core shell nanowires by means of a two-step process, for their applic...
Optical excitation is widely acknowledged as one of the most effective means of balancing sensor res...
This paper compares the H2S gas sensing properties of CuO-functionalized WO3 nanowires with those of...
A highly sensitive and fast responding CO sensor was fabricated from a sheet-like SnO2. The SnO shee...
Abstract We report the effect of the fabric of the surface microstructure on the CO gas sensing prop...
The H2S gas sensing characterization of gas sensors based on the SnO2 nanowires network has been rep...
Au/SnO2 core-shell structure nanoparticles (NPs) with different shell thicknesses as a CO gas sensin...
The long duration of a working device with a limited battery capacity requires gas sensors with low ...
Developing metal oxide gas sensors for internet-of-things (IoT) and portable applications require lo...
We fabricated a nanowire-based gas sensor using a simple method of growing SnO(2) nanowires bridging...
Tin oxide (SnO₂) nanowires were synthesized by a molecule based chemical vapour deposition process a...
The results of research aimed at the gas sensing nanowires (NWs) engineering are presented. Structur...
Abstract – The results of research aimed at the gas sensing nanowires (NWs) engineering are presente...
Metal decoration on hollow metal oxide nanostructures is an attractive route to enhance gas sensing ...
In this present study, the fabricated sensors based on WO3 nanowires sensing films were grown by the...
We fabricated SnO2/cobalt (Co) core shell nanowires by means of a two-step process, for their applic...
Optical excitation is widely acknowledged as one of the most effective means of balancing sensor res...
This paper compares the H2S gas sensing properties of CuO-functionalized WO3 nanowires with those of...
A highly sensitive and fast responding CO sensor was fabricated from a sheet-like SnO2. The SnO shee...