Electrical conductivity and gas sensitivity of α-Ga2O2/ ε(κ)-Ga2O3 structures were measured for oxygen concentrations ranging from 2 % to 100 % and temperatures ranging from 25 °C to 220 °C. It was found that the oxygen sensitivity of the structures depended on the donor dopant concentration. The alpha -Ga _{2}O_{3}/arepsilon ( kappa )-Ga 2 O 3 structures doped with sim 1.5 imes 10^{17} cm −3 of Sn showed high sensitivity to O 2 in the temperature range from 180 °C to 220 °C and at the bias voltage below 7.5 V. This effect can be attributed to the chemisorption of oxygen molecules on the surface of structures, which reduces energy barriers between ε(κ)-Ga2O3 grains
AbstractThis study aims to provide a better fundamental understanding of the gas-sensing mechanism o...
In this work, the conduction mechanisms across novel contacts to epitaxial films of pure phase epsil...
High-temperature β-Ga2O3:Cr2O3-based sensors sensitive to oxygen- and hydrogen-containing gases have...
The electrical conductivity of pseudohexagonal ε(κ)-Ga2O3 films under different ambient gases (H2, N...
Miniature O2 sensors with low energy consumption are of practical interest for the chemical and meta...
The oxygen gas sensing performance of Ga2O3 semiconducting thin films doped with Ce, Sb, W and Zn ha...
The existing power generation systems, which utilize fossil fuels, are in dire need of efficient, re...
The existing power generation systems, which utilize fossil fuels, are in dire need of efficient, re...
The reliable, selective, and fast detection of the inorganic and organic gases in indoor and outdoor...
In this paper, we demonstrate a proof-of-concept oxygen sensor based on the thermoelectric principle...
We investigate the effect of thermal annealing in argon and of oxygen plasma processing on the photo...
Currently, there is enormous interest in research, development and optimization of the combustion pr...
Gas sensing properties of Schottky metal-semiconductor-metal (MSM) structures based on α-Ga2O3 epita...
This study aims to provide a better fundamental understanding of the gas-sensing mechanism of In2O3-...
This study aims to provide a better fundamental understanding of the gas-sensing mechanism of In2O3-...
AbstractThis study aims to provide a better fundamental understanding of the gas-sensing mechanism o...
In this work, the conduction mechanisms across novel contacts to epitaxial films of pure phase epsil...
High-temperature β-Ga2O3:Cr2O3-based sensors sensitive to oxygen- and hydrogen-containing gases have...
The electrical conductivity of pseudohexagonal ε(κ)-Ga2O3 films under different ambient gases (H2, N...
Miniature O2 sensors with low energy consumption are of practical interest for the chemical and meta...
The oxygen gas sensing performance of Ga2O3 semiconducting thin films doped with Ce, Sb, W and Zn ha...
The existing power generation systems, which utilize fossil fuels, are in dire need of efficient, re...
The existing power generation systems, which utilize fossil fuels, are in dire need of efficient, re...
The reliable, selective, and fast detection of the inorganic and organic gases in indoor and outdoor...
In this paper, we demonstrate a proof-of-concept oxygen sensor based on the thermoelectric principle...
We investigate the effect of thermal annealing in argon and of oxygen plasma processing on the photo...
Currently, there is enormous interest in research, development and optimization of the combustion pr...
Gas sensing properties of Schottky metal-semiconductor-metal (MSM) structures based on α-Ga2O3 epita...
This study aims to provide a better fundamental understanding of the gas-sensing mechanism of In2O3-...
This study aims to provide a better fundamental understanding of the gas-sensing mechanism of In2O3-...
AbstractThis study aims to provide a better fundamental understanding of the gas-sensing mechanism o...
In this work, the conduction mechanisms across novel contacts to epitaxial films of pure phase epsil...
High-temperature β-Ga2O3:Cr2O3-based sensors sensitive to oxygen- and hydrogen-containing gases have...