Release of Results | Ultrasonic-Assisted High-Sensitivity Oxide Gas Sensor

Release of Results | Ultrasonic-Assisted High-Sensitivity Oxide Gas Sensor

Ultrasonic-Assisted High-Sensitivity Oxide Gas Sensor

Nanjing University of Aeronautics and Astronautics

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Overview of Results

Oxide gas sensors have advantages such as low cost, good environmental adaptability, long lifespan, fast response and recovery, ease of mass production, and ease of miniaturization and integration. Therefore, related industries are attempting to utilize improved oxide sensors to achieve high-sensitivity gas sensing, aiming to reduce sensor costs in the low-concentration gas sensing field, improve environmental adaptability, extend service life, and expand application range. The ultrasonic-assisted oxide gas sensor significantly enhances the sensitivity of oxide gas sensors using ultrasonic molecular manipulation technology. Prototype testing shows that the sensitivity of the ultrasonic-assisted oxide gas sensor is generally an order of magnitude higher than that of traditional oxide gas sensors. This technology provides an effective method for low-cost enhancement of oxide gas sensor sensitivity and significantly reduces its detection limit.

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Application Fields

Gas monitoring.

Release of Results | Ultrasonic-Assisted High-Sensitivity Oxide Gas Sensor

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Market Prospects

Early warning of hazardous material discharge in public safety, toxic gas leakage in industrial fields and workplaces, atmospheric pollution detection in environmental protection, impurity component detection in compressed gas production, analysis and detection of how to analyze, detection of organic residues in de-yellowing products, detection of harmful gases in maternal and child health protection products, detection of breath and raw liquids in personal health monitoring products, detection of volatile organic compounds indoors and in vehicles, food quality detection, etc.

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Contact Information

If you are interested in cooperation, please contact:

Wang Lu 16601168539

Follow the Transformation Center

Release of Results | Ultrasonic-Assisted High-Sensitivity Oxide Gas SensorRelease of Results | Ultrasonic-Assisted High-Sensitivity Oxide Gas SensorRelease of Results | Ultrasonic-Assisted High-Sensitivity Oxide Gas SensorRelease of Results | Ultrasonic-Assisted High-Sensitivity Oxide Gas SensorRelease of Results | Ultrasonic-Assisted High-Sensitivity Oxide Gas SensorRelease of Results | Ultrasonic-Assisted High-Sensitivity Oxide Gas Sensor

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Release of Results | Ultrasonic-Assisted High-Sensitivity Oxide Gas Sensor

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