Metal-semiconductor junctions and interfaces have been studied for many years due to their importance in applications such as semiconductor electronics and solar cells. However, semiconductor-metal networks are less studied because there is a lack of effective methods to fabricate such structures. Here, we report a novel Au-ZnO-based metal-semiconductor (M-S)n network in which ZnO nanowires were grown horizontally on gold particles and extended to reach the neighboring particles, forming an (M-S)n network. The (M-S)n network was further used as a gas sensor for sensing ethanol and acetone gases. The results show that the (M-S)n network is sensitive to ethanol (28.1 ppm) and acetone (22.3 ppm) gases and has the capacity to recognize the two ...
It is crucial to develop new bottom-up fabrication methods with control over the physical properties...
In this thesis, gas sensors based on on-chip hydrothermally grown 1-D zinc oxide (ZnO) nanostructure...
In this paper we report the synthesis of ZnO nanowires via chemical vapor deposition (CVD) at 650 °C...
Metal-semiconductor junctions and interfaces have been studied for many years due to their importanc...
The proper engineering design of gas sensors and the controlled synthesis of sensing materials for t...
Special Issue "Semiconductor Nanowires: From Synthesis and Characterization to Devices"International...
Abstract Reducing the high operation temperature of gas sensor to room temperature (RT) have attract...
Randomly oriented ZnO nanowires were grown directly onto alumina substrates having platinum interdig...
Metal-oxide nanowires are showing a great interest in the domain of gas sensing due to their large r...
Engineering of highly performing nanomaterials, capable of rapid detection of trace concentrations o...
Junction networks made of longitudinally connected metal oxide nanowires (MOx NWs) have been widely ...
© 2018 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Engineering of highly performing nanomaterials, ca...
Conductometric metal-oxide gas sensors are widely used today due to their high sensitivity, but thei...
Low concentrations of hazardous gases are difficult to detect with common gas sensors. Using semicon...
Zinc oxide (ZnO) based nanostructures represent an important class of gas sensor materials, due to t...
It is crucial to develop new bottom-up fabrication methods with control over the physical properties...
In this thesis, gas sensors based on on-chip hydrothermally grown 1-D zinc oxide (ZnO) nanostructure...
In this paper we report the synthesis of ZnO nanowires via chemical vapor deposition (CVD) at 650 °C...
Metal-semiconductor junctions and interfaces have been studied for many years due to their importanc...
The proper engineering design of gas sensors and the controlled synthesis of sensing materials for t...
Special Issue "Semiconductor Nanowires: From Synthesis and Characterization to Devices"International...
Abstract Reducing the high operation temperature of gas sensor to room temperature (RT) have attract...
Randomly oriented ZnO nanowires were grown directly onto alumina substrates having platinum interdig...
Metal-oxide nanowires are showing a great interest in the domain of gas sensing due to their large r...
Engineering of highly performing nanomaterials, capable of rapid detection of trace concentrations o...
Junction networks made of longitudinally connected metal oxide nanowires (MOx NWs) have been widely ...
© 2018 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Engineering of highly performing nanomaterials, ca...
Conductometric metal-oxide gas sensors are widely used today due to their high sensitivity, but thei...
Low concentrations of hazardous gases are difficult to detect with common gas sensors. Using semicon...
Zinc oxide (ZnO) based nanostructures represent an important class of gas sensor materials, due to t...
It is crucial to develop new bottom-up fabrication methods with control over the physical properties...
In this thesis, gas sensors based on on-chip hydrothermally grown 1-D zinc oxide (ZnO) nanostructure...
In this paper we report the synthesis of ZnO nanowires via chemical vapor deposition (CVD) at 650 °C...