Pt/nanostructured molybdenum oxide (MoO3) /SiC Schottky diode based gas sensors were fabricated for hydrogen (H2) gas sensing. Due to the enhanced performance, which is ascribed to the application of MoO3 nanostructures, these devices were used in reversed bias. MoO3 characterization by scanning electron microscopy showed morphology of randomly orientated nanoplatelets with thicknesses between 50 and 500 nm. An α-β mixed phase crystallographic structure of MoO3 was characterized by x-ray diffraction. At 180 °C, 1.343 V voltage shift in the reverse I-V curve and a Pt/MoO3 barrier height change of 20 meV were obtained after exposure to 1% H2 gas in synthetic air
In the present work, we studied the controlled growth of MoO3 nanostructures and their gas sensing p...
There has been significant interest in developing metal oxide films with high surface area-to-volume...
This paper presents material and gas sensing properties of Pt/SnO2 nanowires/SiC metal oxide semicon...
Pt/nanostructured molybdenum oxide (MoO3) /SiC Schottky diode based gas sensors were fabricated for ...
A nanostructured M003 based Schottky diode is presented for hydrogen (H2) gas sensing applications. ...
An investigation of the electrical and hydrogen sensing properties of a novel Schottky diode based o...
In this paper, we report the development of a novel Pt/MoO3 nano-flower/SiC Schottky diode based dev...
The article can be viewed at: http://www.ama-science.org/proceedings/details/1050Poster Session 1Top...
Pt/nanostructured WO3/SiC Schottky diodes were fabricated and applied for hydrogen gas sensing appli...
This paper presents the fabrication and study of a Schottky diode based on Pt/WO3 nanoplatelet/SiC f...
Pt/nanostructured WO3/SiC Schottky diodes were fabricated and applied for hydrogen gas sensing appli...
This paper presents the fabrication and study of a Schottky diode based on Pt/WO3 nanoplatelet/SiC f...
In this paper, we present how a thin RF sputtered layer of lanthanum oxide (La2O3) can alter electri...
Pt/WO3/SiC devices based Schottky diodes have been fabricated and their hydrogen and hydrocarbon gas...
A comprehensive investigation of the electric field enhancement on a novel reverse biased Schottky c...
In the present work, we studied the controlled growth of MoO3 nanostructures and their gas sensing p...
There has been significant interest in developing metal oxide films with high surface area-to-volume...
This paper presents material and gas sensing properties of Pt/SnO2 nanowires/SiC metal oxide semicon...
Pt/nanostructured molybdenum oxide (MoO3) /SiC Schottky diode based gas sensors were fabricated for ...
A nanostructured M003 based Schottky diode is presented for hydrogen (H2) gas sensing applications. ...
An investigation of the electrical and hydrogen sensing properties of a novel Schottky diode based o...
In this paper, we report the development of a novel Pt/MoO3 nano-flower/SiC Schottky diode based dev...
The article can be viewed at: http://www.ama-science.org/proceedings/details/1050Poster Session 1Top...
Pt/nanostructured WO3/SiC Schottky diodes were fabricated and applied for hydrogen gas sensing appli...
This paper presents the fabrication and study of a Schottky diode based on Pt/WO3 nanoplatelet/SiC f...
Pt/nanostructured WO3/SiC Schottky diodes were fabricated and applied for hydrogen gas sensing appli...
This paper presents the fabrication and study of a Schottky diode based on Pt/WO3 nanoplatelet/SiC f...
In this paper, we present how a thin RF sputtered layer of lanthanum oxide (La2O3) can alter electri...
Pt/WO3/SiC devices based Schottky diodes have been fabricated and their hydrogen and hydrocarbon gas...
A comprehensive investigation of the electric field enhancement on a novel reverse biased Schottky c...
In the present work, we studied the controlled growth of MoO3 nanostructures and their gas sensing p...
There has been significant interest in developing metal oxide films with high surface area-to-volume...
This paper presents material and gas sensing properties of Pt/SnO2 nanowires/SiC metal oxide semicon...