A zinc oxide (ZnO) nanorod based surface acoustic wave (SAW) sensor has been developed and investigated towards hydrogen (H-2) gas. The ZnO nanorods were deposited onto a layered ZnO/64° YX LiNbO3 substrate using a liquid solution method. Micro-characterization results revealed that the diameters of ZnO nanorods are around 100 and 40 nm on LiNbO3 and An (metallization for electrodes), respectively. The sensor was exposed to different concentrations of H2 in synthetic air at operating temperatures between 200°C and 300°C. The study showed that the sensor responded with highest frequency shift at 265°C. At this temperature, stable baseline and fast response and recovery were observed
In this study, the hydrogen (H2) sensing properties of vertically aligned zinc oxide (ZnO) nanorods ...
A delay-line-type surface acoustic wave (SAW) sensor based on a zinc oxide (ZnO) sensitive layer was...
Layered surface acoustic wave (SAW) devices for the monitoring of NO2 and H-2 in synthetic air have ...
Abstract — A zinc oxide (ZnO) nanorod based surface acoustic wave (SAW) sensor has been developed an...
Zinc oxide (ZnO) nanorod based surface acoustic wave (SAW) gas sensor has been developed. ZnO nanoro...
Single crystal nanobelts of ZnO were synthesized and deposited onto 36° YX LiTaO<sub>3</sub...
Abstract- Zinc oxide (ZnO) nanorod based surface acoustic wave (SAW) gas sensor has been developed. ...
A layered Surface Acoustic Wave (SAW) hydrogen gas sensor, based on a delay line structure with 64 f...
Low-dimensional nano structures ZnO are potential material for optoelectronicand gas-sensing applica...
In this thesis, gas sensors based on on-chip hydrothermally grown 1-D zinc oxide (ZnO) nanostructure...
We report a simple method for fabricating ZnO gas sensors via a sonochemical route and their H2 gas ...
Using a seed layer-free hydrothermal method, ZnO nanorods (NRs) were deposited on ST-cut quartz surf...
A “highly flexible low-cost” H2 gas sensor was fabricated via inclined and vertically well-aligned Z...
SAW devices can be realized as sensors by coating a suitable sensing medium on the acoustic path of ...
The capability of zinc oxide (ZnO) as hydrogen sensing elements has been pushed to its limits. Diffe...
In this study, the hydrogen (H2) sensing properties of vertically aligned zinc oxide (ZnO) nanorods ...
A delay-line-type surface acoustic wave (SAW) sensor based on a zinc oxide (ZnO) sensitive layer was...
Layered surface acoustic wave (SAW) devices for the monitoring of NO2 and H-2 in synthetic air have ...
Abstract — A zinc oxide (ZnO) nanorod based surface acoustic wave (SAW) sensor has been developed an...
Zinc oxide (ZnO) nanorod based surface acoustic wave (SAW) gas sensor has been developed. ZnO nanoro...
Single crystal nanobelts of ZnO were synthesized and deposited onto 36° YX LiTaO<sub>3</sub...
Abstract- Zinc oxide (ZnO) nanorod based surface acoustic wave (SAW) gas sensor has been developed. ...
A layered Surface Acoustic Wave (SAW) hydrogen gas sensor, based on a delay line structure with 64 f...
Low-dimensional nano structures ZnO are potential material for optoelectronicand gas-sensing applica...
In this thesis, gas sensors based on on-chip hydrothermally grown 1-D zinc oxide (ZnO) nanostructure...
We report a simple method for fabricating ZnO gas sensors via a sonochemical route and their H2 gas ...
Using a seed layer-free hydrothermal method, ZnO nanorods (NRs) were deposited on ST-cut quartz surf...
A “highly flexible low-cost” H2 gas sensor was fabricated via inclined and vertically well-aligned Z...
SAW devices can be realized as sensors by coating a suitable sensing medium on the acoustic path of ...
The capability of zinc oxide (ZnO) as hydrogen sensing elements has been pushed to its limits. Diffe...
In this study, the hydrogen (H2) sensing properties of vertically aligned zinc oxide (ZnO) nanorods ...
A delay-line-type surface acoustic wave (SAW) sensor based on a zinc oxide (ZnO) sensitive layer was...
Layered surface acoustic wave (SAW) devices for the monitoring of NO2 and H-2 in synthetic air have ...