AbstractA novel structures of nanomaterials gas sensors array constructed using ZnO, and ZnO doped with Al via sol–gel technique. Two structure arrays are developed; the first one is a double sensor array based on doping with percentages of 1% and 5%. The second is a quadrature sensor array based on several doping ratios concentrations (0%, 1%, 5% and 10%). The morphological structures of prepared ZnO were revealed using scanning electron microscope (SEM). X-ray diffraction (XRD) patterns reveal a highly crystallized wurtzite structure and used for identifying phase structure and chemical state of both ZnO and ZnO doped with Al under different preparation conditions and different doping ratios. Chemical composition of Al-doped ZnO nanopowde...
Zinc oxide (ZnO) based nanostructures represent an important class of gas sensor materials, due to t...
The author has developed and investigated nanostructured materials based conductometric and optical ...
Zinc oxide (ZnO) is a well suited n-type semiconductor material due to oxygen vacancies and zinc int...
AbstractA novel structures of nanomaterials gas sensors array constructed using ZnO, and ZnO doped w...
AbstractUndoped and In-doped ZnO including nanoparticles and nanorods were successfully synthesized ...
AbstractGas sensors having zinc oxide (ZnO) nanoparticles as a sensing layer are consumes low power,...
Metal oxide chemical sensors based on nanomaterials are gaining popularity and finding extensive use...
Low-dimensional nano structures ZnO are potential material for optoelectronicand gas-sensing applica...
Gas sensors are devices that can convert the concentration of an analyte gas into an electronic sign...
Recently, metal oxide gas sensors by nanostructures have stirred interest and have found their way i...
Sensors are devices which have been commonly used to measure the functional dependence and the varia...
The current research demonstrates new techniques for characterization of electrical transport proper...
AbstractIn order to increase the sensitivity and selectivity of semiconducting gas sensors, we have ...
In this thesis, gas sensors based on on-chip hydrothermally grown 1-D zinc oxide (ZnO) nanostructure...
In this work, the main objective is to enhance the gas sensing capability through investigating the ...
Zinc oxide (ZnO) based nanostructures represent an important class of gas sensor materials, due to t...
The author has developed and investigated nanostructured materials based conductometric and optical ...
Zinc oxide (ZnO) is a well suited n-type semiconductor material due to oxygen vacancies and zinc int...
AbstractA novel structures of nanomaterials gas sensors array constructed using ZnO, and ZnO doped w...
AbstractUndoped and In-doped ZnO including nanoparticles and nanorods were successfully synthesized ...
AbstractGas sensors having zinc oxide (ZnO) nanoparticles as a sensing layer are consumes low power,...
Metal oxide chemical sensors based on nanomaterials are gaining popularity and finding extensive use...
Low-dimensional nano structures ZnO are potential material for optoelectronicand gas-sensing applica...
Gas sensors are devices that can convert the concentration of an analyte gas into an electronic sign...
Recently, metal oxide gas sensors by nanostructures have stirred interest and have found their way i...
Sensors are devices which have been commonly used to measure the functional dependence and the varia...
The current research demonstrates new techniques for characterization of electrical transport proper...
AbstractIn order to increase the sensitivity and selectivity of semiconducting gas sensors, we have ...
In this thesis, gas sensors based on on-chip hydrothermally grown 1-D zinc oxide (ZnO) nanostructure...
In this work, the main objective is to enhance the gas sensing capability through investigating the ...
Zinc oxide (ZnO) based nanostructures represent an important class of gas sensor materials, due to t...
The author has developed and investigated nanostructured materials based conductometric and optical ...
Zinc oxide (ZnO) is a well suited n-type semiconductor material due to oxygen vacancies and zinc int...