Temperature-Dependent n-Type and p-Type Sensing Behaviors of CuO Nanosheets/MEMS to NO2 Gas

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Last updated 02 Juni 2024
Temperature-Dependent n-Type and p-Type Sensing Behaviors of CuO  Nanosheets/MEMS to NO2 Gas
Temperature-Dependent n-Type and p-Type Sensing Behaviors of CuO  Nanosheets/MEMS to NO2 Gas
Heteronanostructural metal oxide-based gas microsensors
Temperature-Dependent n-Type and p-Type Sensing Behaviors of CuO  Nanosheets/MEMS to NO2 Gas
SnO2/rGO nanocomposite for the detection of biomarkers of lung cancer, Micro and Nano Systems Letters
Temperature-Dependent n-Type and p-Type Sensing Behaviors of CuO  Nanosheets/MEMS to NO2 Gas
Rational Design of Semiconductor‐Based Chemiresistors and their Libraries for Next‐Generation Artificial Olfaction - Jeong - 2020 - Advanced Materials - Wiley Online Library
Temperature-Dependent n-Type and p-Type Sensing Behaviors of CuO  Nanosheets/MEMS to NO2 Gas
Highly sensitive near room temperature operable NO2 gas-sensor for enhanced selectivity via nanoporous CuO@ZnO heterostructures - ScienceDirect
Temperature-Dependent n-Type and p-Type Sensing Behaviors of CuO  Nanosheets/MEMS to NO2 Gas
a) Comparison of the sensing characteristics of bare CuO nanocubes
Temperature-Dependent n-Type and p-Type Sensing Behaviors of CuO  Nanosheets/MEMS to NO2 Gas
Food quality assessment using chemoresistive gas sensors: achievements and future perspectives - Sustainable Food Technology (RSC Publishing) DOI:10.1039/D3FB00196B
Temperature-Dependent n-Type and p-Type Sensing Behaviors of CuO  Nanosheets/MEMS to NO2 Gas
Recent Progress of Nanostructured Sensing Materials from 0D to 3D: Overview of Structure–Property‐Application Relationship for Gas Sensors - Zhou - 2021 - Small Methods - Wiley Online Library
Temperature-Dependent n-Type and p-Type Sensing Behaviors of CuO  Nanosheets/MEMS to NO2 Gas
Sensing response of n-type and p-type in reducing gas environment, CO.
Temperature-Dependent n-Type and p-Type Sensing Behaviors of CuO  Nanosheets/MEMS to NO2 Gas
Temperature-Dependent n-Type and p-Type Sensing Behaviors of CuO Nanosheets/ MEMS to NO2 Gas
Temperature-Dependent n-Type and p-Type Sensing Behaviors of CuO  Nanosheets/MEMS to NO2 Gas
Frontiers Application of Graphene Hybrid Materials in Fault Characteristic Gas Detection of Oil-Immersed Equipment
Temperature-Dependent n-Type and p-Type Sensing Behaviors of CuO  Nanosheets/MEMS to NO2 Gas
Recent advances in energy-saving chemiresistive gas sensors: A review. - Abstract - Europe PMC
Temperature-Dependent n-Type and p-Type Sensing Behaviors of CuO  Nanosheets/MEMS to NO2 Gas
Full article: Physical mechanisms underpinning conductometric gas sensing properties of metal oxide nanostructures
Temperature-Dependent n-Type and p-Type Sensing Behaviors of CuO  Nanosheets/MEMS to NO2 Gas
Temperature-Dependent n-Type and p-Type Sensing Behaviors of CuO Nanosheets/ MEMS to NO2 Gas

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