Conduction Model of Metal Oxide Gas Sensors
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- Type
- article
- Published
- 2001-12-01
- Cited by
- 2,428
- References
- 10
- OpenAlex
- https://openalex.org/W1685916560
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:93377429
Keywords
Computer science, Process (computing), Work (physics), Frame (networking), Point (geometry)
References
- Interactions of tin oxide surface with O2, H2O AND H2
- FT-IR characterization of tin dioxide gas sensor materials under working conditions
- The role of catalysis in solid-state gas sensors
- Oxygen chemisorption on tin oxide: Correlation between electrical conductivity and EPR measurements
- An XPS and FTIR study of SO2 adsorption on SnO2 surfaces
- Tin oxide surfaces. Part 1.—Surface hydroxyl groups and the chemisorption of carbon dioxide and carbon monoxide on tin(IV) oxide
- Dipole- and charge transfer contributions to the work function change of semiconducting thin films: experiment and theory
- The Thermal Desorption of Surface Hydroxyls on Tin(IV) Oxide
- The Surface Science of Metal Oxides
- The Chemical Physics of Surfaces
- The Chemical Physics of Surfaces
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- Electrochemical Immunosensing of Cortisol in an Automated Microfluidic System Towards Point-of-Care Applications
- Enhanced Ethanol Gas Sensing Properties of SnO2-Core/ZnO-Shell Nanostructures
- CuO-Decorated ZnO Hierarchical Nanostructures as Efficient and Established Sensing Materials for H2S Gas Sensors
- Toward breath analysis on a chip for disease diagnosis using semiconductor-based chemiresistors: recent progress and future perspectives.
- Investigation of nanostructured thin films on surface acoustic wave and conductometric transducers for gas sensing applications
- New applications of organic polymers in chemical gas sensors
- Study of structural, electronic, and charge transfer properties in novel two dimensional and single layered materials using first principles calculations
- Aqueous synthesis and computational modelling of metal oxide nanostructures for gas sensing applications
- Layered surface acoustic wave based gas sensors utilising nanostructured indium oxide thin layer
- P2.0.17 Ta2O5 nanoporous membrane for chemical sensing in harsh environment
- 4.1.4 Work Function Analysis of Gas Sensitive WO3 Layers with Pt Doping
- Gas Detection Applications of Vertically Aligned Metal Oxide Nanowire Arrays
- Hybrid Nanostructures for Artificial Machine Olfaction
- Enhanced H2S gas sensing properties of multiple-networked Pd-doped SnO2-core/ZnO-shell nanorod sensors
- SnO2 nanoslab as NO2 sensor: identification of the NO2 sensing mechanism on a SnO2 surface.
- Analysis of the kinetics of surface reactions on a zinc oxide nanosheet-based carbon monoxide sensor using an Eley–Rideal model
- Enhanced acetone gas sensing performance of the multiple-networked Fe2O3-functionalized In2O3 nanowire sensor
- NO sensing by single crystalline WO3 nanowires
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