Nanocrystalline ZnO quantum dots (QD) with a diameter of 10 nm was synthesized and tested toward eight different toxic industrial chemicals (i.e., nitrogen dioxide (NO2), hydrogen sulfide (H2S), ammonia (NH3), carbon monoxide (CO), methane (CH4), ethanol (C2H5OH), acetone (CH3)2CO, and toluene (C6H5CH3)) with a broad concentration range at five different operating temperatures. Systemic studies allow to determine the kinetics of gas sensing as well as the competing reactions of analytes with sensing material and adsorbed oxygen. ZnO QD showed an excellent sensing performance toward NO2 and H2S in comparison to other target analytes. The selectivity can be further improved by controlling the operating temperature (i.e., higher selectivity to...
Advances in gas sensing devices are urgently needed to reduce air pollution and control human health...
The gas-detecting ability of nanostructured ZnO has led to significant attention being paid to the d...
The current research demonstrates new techniques for characterization of electrical transport proper...
An unceasing scientific challenge to monitor the emissions of toxic and flammable gases in a selecti...
Solid state chemical sensors are gaining popularity and finding extensive use in process control, en...
Zinc oxide nanoparticles are prepated by calcining zinc hydrocarbonate precursors at 300-700 degrees...
This paper highlights the recent advances and new trends in nanomaterial-based detection of NO2 in a...
Detection of toxic gases such as hydrogen sulfide (H₂S) at low temperatures is of high importance ...
ZnO is worth evaluating for chemical sensing due to its outstanding physical and chemical properties...
There is need for reliable, low cost detectors to continuously monitor the air quality in presence o...
In this thesis, gas sensors based on on-chip hydrothermally grown 1-D zinc oxide (ZnO) nanostructure...
AbstractGas sensors having zinc oxide (ZnO) nanoparticles as a sensing layer are consumes low power,...
There is need for reliable, low cost detectors to continuously monitor the air quality in presence o...
International audienceZnO nanoparticles (NP) with different morphologies such as nanorods (NR), isot...
ristine and electrochemically Pd-modified ZnO nanorods (ZnO NRs) were proposed as active sensing lay...
Advances in gas sensing devices are urgently needed to reduce air pollution and control human health...
The gas-detecting ability of nanostructured ZnO has led to significant attention being paid to the d...
The current research demonstrates new techniques for characterization of electrical transport proper...
An unceasing scientific challenge to monitor the emissions of toxic and flammable gases in a selecti...
Solid state chemical sensors are gaining popularity and finding extensive use in process control, en...
Zinc oxide nanoparticles are prepated by calcining zinc hydrocarbonate precursors at 300-700 degrees...
This paper highlights the recent advances and new trends in nanomaterial-based detection of NO2 in a...
Detection of toxic gases such as hydrogen sulfide (H₂S) at low temperatures is of high importance ...
ZnO is worth evaluating for chemical sensing due to its outstanding physical and chemical properties...
There is need for reliable, low cost detectors to continuously monitor the air quality in presence o...
In this thesis, gas sensors based on on-chip hydrothermally grown 1-D zinc oxide (ZnO) nanostructure...
AbstractGas sensors having zinc oxide (ZnO) nanoparticles as a sensing layer are consumes low power,...
There is need for reliable, low cost detectors to continuously monitor the air quality in presence o...
International audienceZnO nanoparticles (NP) with different morphologies such as nanorods (NR), isot...
ristine and electrochemically Pd-modified ZnO nanorods (ZnO NRs) were proposed as active sensing lay...
Advances in gas sensing devices are urgently needed to reduce air pollution and control human health...
The gas-detecting ability of nanostructured ZnO has led to significant attention being paid to the d...
The current research demonstrates new techniques for characterization of electrical transport proper...