This work illustrates the sensing behavior of Zn-doped and undoped In2O3 nanowires toward pollutant gases. An enhanced sensor response to reducing gases (e.g. H2, CO and ethanol) from indium zinc oxide (IZO) nanowires in comparison to In2O3 nanowires is obtained. Zn-doping increases the oxygen vacancies which enhance the oxygen ion adsorption on the nanowire surface. These adsorbed oxygen ions enhance the sensor responses for CO (from 4.5 to 21.5 for 400 ppm), H2 (from 4.7 to 32.5 for 4000 ppm) and ethanol (from 3.5 to 60 for 100 ppm). On the other hand, the sensor response for NO2 reduces (from 17.5 to 6.5 for 1 ppm NO2) after Zn-doping. Opposing temperature dependent sensor response from IZO nanowires toward NO2 is observed at higher temp...
In the last decades, resistive gas sensors based on semiconductor oxides have been the topic of inte...
This article provides an overview of the recent development of ZnO nanowires (NWs) for chemoresistiv...
The well-constituted hierarchical arrangement of hexagonal ZnO nanowires with diameters <180 nm and ...
This work illustrates the sensing behavior of Zn-doped and undoped In2O3 nanowires toward pollutant ...
This paper illustrates the novel approaches to augment the sensing behavior of In2O3 base nanowires ...
Heteronanostructures are very promising gas sensor materials due to their high surface area and hybr...
Zinc oxide nanowires were configured as n-channel field-effect transistors. These transistors were i...
Zinc oxide nanowires are configured as n-channel FETs. These transistors are implemented as chemical...
Zinc oxide nanowires are configured as n-channel field effect transistors. These transistors are imp...
We demonstrate a room temperature sensing of CO gas (1–5 ppm) using high performance single Zn-doped...
Zinc oxide (ZnO) based nanostructures represent an important class of gas sensor materials, due to t...
Surface coating with an organic self-assembled monolayer (SAM) can enhance surface reactions or the ...
Surface coating with an organic self-assembled monolayer (SAM) can enhance surface reactions or the ...
Additives in semiconductor metal oxides are commonly used to improve sensing behavior of gas sensors...
Abstract—Zinc oxide nanowires are configured as n-channel FETs. These transistors are implemented as...
In the last decades, resistive gas sensors based on semiconductor oxides have been the topic of inte...
This article provides an overview of the recent development of ZnO nanowires (NWs) for chemoresistiv...
The well-constituted hierarchical arrangement of hexagonal ZnO nanowires with diameters <180 nm and ...
This work illustrates the sensing behavior of Zn-doped and undoped In2O3 nanowires toward pollutant ...
This paper illustrates the novel approaches to augment the sensing behavior of In2O3 base nanowires ...
Heteronanostructures are very promising gas sensor materials due to their high surface area and hybr...
Zinc oxide nanowires were configured as n-channel field-effect transistors. These transistors were i...
Zinc oxide nanowires are configured as n-channel FETs. These transistors are implemented as chemical...
Zinc oxide nanowires are configured as n-channel field effect transistors. These transistors are imp...
We demonstrate a room temperature sensing of CO gas (1–5 ppm) using high performance single Zn-doped...
Zinc oxide (ZnO) based nanostructures represent an important class of gas sensor materials, due to t...
Surface coating with an organic self-assembled monolayer (SAM) can enhance surface reactions or the ...
Surface coating with an organic self-assembled monolayer (SAM) can enhance surface reactions or the ...
Additives in semiconductor metal oxides are commonly used to improve sensing behavior of gas sensors...
Abstract—Zinc oxide nanowires are configured as n-channel FETs. These transistors are implemented as...
In the last decades, resistive gas sensors based on semiconductor oxides have been the topic of inte...
This article provides an overview of the recent development of ZnO nanowires (NWs) for chemoresistiv...
The well-constituted hierarchical arrangement of hexagonal ZnO nanowires with diameters <180 nm and ...