This paper presents the propene gas sensing performance of Pt/Ga<sub>2</sub>O<sub>3</sub>/SiC based Schottky diodes. The metal oxide semiconducting Ga<sub>2</sub>O<sub>3</sub> thin films were doped with Zn and prepared by the sol-gel process. The thin films were deposited onto the SiC by the spin coating technique and a Pt layer was deposited on the top of the metal oxide forming the Schottky diode. The sensor responses were stable and repeatable towards propene at operating temperatures between 300 and 600°C. The diodes were biased at a constant current of 2 mA. When exposed to 1,900 ppm of propene at an operating temperature of 525°C, a shift of 85 mV was observed
Silicon carbide based Schottky diode gas sensors are being developed for applications such as emissi...
Zinc oxide (ZnO) is one of the most promising electronic and photonic materials to date. In this wor...
In this paper, we fabricated Pt/tantalum oxide (Ta 2O 5) Schottky diodes for hydrogen sensing applic...
Silicon carbide based metal-oxide-semiconductor (MOS) devices are attractive for gas sensing in hars...
In this paper, a novel metal-reactive insulator-silicon carbide device with a catalytic layer for hy...
Pt/Ga2O3/SiC metal-reactive insulator-silicon carbide (MRISiC) devices operated as Schottky diodes w...
This paper presents the results of our investigations on the hydrogen gas response of Pt/Ga2O3/SiC d...
Pt/WO3/SiC devices based Schottky diodes have been fabricated and their hydrogen and hydrocarbon gas...
Pt/anodized TiO2/SiC based metal-oxide-semiconductor (MOS) devices were fabricated and characterized...
A nanostructured Schottky diode was fabricated to sense hydrogen and propene gases in the concentrat...
A nanostructured Schottky diode was fabricated to sense hydrogen and propene gases in the concentrat...
Silicon carbide based Schottky diode gas sensors are being developed for high temperature applicatio...
Electronic grade Silicon Carbide (SiC) is a ceramic material which can operate as a semiconductor at...
In this research, novel nanostructured thin film based Schottky diodes for gas sensing applications ...
Field-effect hydrogen gas sensor devices were fabricated with the structure of a series connection b...
Silicon carbide based Schottky diode gas sensors are being developed for applications such as emissi...
Zinc oxide (ZnO) is one of the most promising electronic and photonic materials to date. In this wor...
In this paper, we fabricated Pt/tantalum oxide (Ta 2O 5) Schottky diodes for hydrogen sensing applic...
Silicon carbide based metal-oxide-semiconductor (MOS) devices are attractive for gas sensing in hars...
In this paper, a novel metal-reactive insulator-silicon carbide device with a catalytic layer for hy...
Pt/Ga2O3/SiC metal-reactive insulator-silicon carbide (MRISiC) devices operated as Schottky diodes w...
This paper presents the results of our investigations on the hydrogen gas response of Pt/Ga2O3/SiC d...
Pt/WO3/SiC devices based Schottky diodes have been fabricated and their hydrogen and hydrocarbon gas...
Pt/anodized TiO2/SiC based metal-oxide-semiconductor (MOS) devices were fabricated and characterized...
A nanostructured Schottky diode was fabricated to sense hydrogen and propene gases in the concentrat...
A nanostructured Schottky diode was fabricated to sense hydrogen and propene gases in the concentrat...
Silicon carbide based Schottky diode gas sensors are being developed for high temperature applicatio...
Electronic grade Silicon Carbide (SiC) is a ceramic material which can operate as a semiconductor at...
In this research, novel nanostructured thin film based Schottky diodes for gas sensing applications ...
Field-effect hydrogen gas sensor devices were fabricated with the structure of a series connection b...
Silicon carbide based Schottky diode gas sensors are being developed for applications such as emissi...
Zinc oxide (ZnO) is one of the most promising electronic and photonic materials to date. In this wor...
In this paper, we fabricated Pt/tantalum oxide (Ta 2O 5) Schottky diodes for hydrogen sensing applic...