This study aims to provide a better fundamental understanding of the gas-sensing mechanism of In(2)O(3)-based conductometric gas sensors. In contrast to typically used polycrystalline films, we study single crystalline In(2)O(3) thin films grown by molecular beam epitaxy (MBE) as a model system with reduced complexity. Electrical conductance of these films essentially consists of two parallel contributions: the bulk of the film and the surface electron accumulation layer (SEAL). Both these contributions are varied to understand their effect on the sensor response. Conductance changes induced by UV illumination in air, which forces desorption of oxygen adatoms on the surface, give a measure of the sensor response and show that the sensor eff...
Nanostructured Indium(III) oxide (In2O3) films deposited by low temperature pulsed electron depositi...
A critical review of thin-film semiconducting materials that are used as gas sensors is presented in...
High sensitive ozone sensors working at room temperature were demonstrated based on In2O3 nanopartic...
AbstractThis study aims to provide a better fundamental understanding of the gas-sensing mechanism o...
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-...
Undoped nanosized In2O3 with n-type conduction was produced in both polymorphic forms (cubic and rho...
In2O3 is an n-type transparent semiconducting oxide possessing a surface electron accumulation layer...
The electrical conductivity of pseudohexagonal ε(κ)-Ga2O3 films under different ambient gases (H2, N...
The conductometric response of SnO2 + In2O3 nanocomposite films to hydrogen and carbon monoxide in a...
Semiconducting In2O3 gas sensors have been fabricated by two different deposition techniques, i.e., ...
This paper reports electrical properties of In2O3 thin film (100 nm) at elevated temperatures (667-1...
The paper considers SnO2 and In2O3 thin films as materials for the design of solid-state conductomet...
The application of transparent conductive oxides in most electronic devices requires a good knowledg...
122 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2003.Changes in the in-plane condu...
Nanostructured Indium(III) oxide (In2O3) films deposited by low temperature pulsed electron depositi...
A critical review of thin-film semiconducting materials that are used as gas sensors is presented in...
High sensitive ozone sensors working at room temperature were demonstrated based on In2O3 nanopartic...
AbstractThis study aims to provide a better fundamental understanding of the gas-sensing mechanism o...
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-...
Undoped nanosized In2O3 with n-type conduction was produced in both polymorphic forms (cubic and rho...
In2O3 is an n-type transparent semiconducting oxide possessing a surface electron accumulation layer...
The electrical conductivity of pseudohexagonal ε(κ)-Ga2O3 films under different ambient gases (H2, N...
The conductometric response of SnO2 + In2O3 nanocomposite films to hydrogen and carbon monoxide in a...
Semiconducting In2O3 gas sensors have been fabricated by two different deposition techniques, i.e., ...
This paper reports electrical properties of In2O3 thin film (100 nm) at elevated temperatures (667-1...
The paper considers SnO2 and In2O3 thin films as materials for the design of solid-state conductomet...
The application of transparent conductive oxides in most electronic devices requires a good knowledg...
122 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2003.Changes in the in-plane condu...
Nanostructured Indium(III) oxide (In2O3) films deposited by low temperature pulsed electron depositi...
A critical review of thin-film semiconducting materials that are used as gas sensors is presented in...
High sensitive ozone sensors working at room temperature were demonstrated based on In2O3 nanopartic...