Title: Simultaneous detection of NH3 and N02 by modified impedance spectroscopy in sensors based on carbon nanotubes
Authors: Blecha, Tomáš
Smítka, Václav
Bodnár, Michal
Štulík, Jiří
Citation: BLECHA, T. SMÍTKA, V. BODNÁR, M. ŠTULÍK, J. Simultaneous detection of NH3 and N02 by modified impedance spectroscopy in sensors based on carbon nanotubes. Energies, 2022, roč. 15, č. 3, s. 1-12. ISSN: 1996-1073
Issue Date: 2022
Publisher: MDPI
Document type: článek
article
URI: 2-s2.0-85123516555
http://hdl.handle.net/11025/47503
ISSN: 1996-1073
Keywords in different language: impedance spectroscopy;scattering parameters;sensor;gas detection;carbon nanotubes
Abstract: There are many gaseous substances that need to be monitored for possible damage to health or the environrnent. This requires many sensors. The solution to reducing the number of sensors is to use one sensor to detect several gaseous substances simultaneously. Efforts to simplify sensor systems thus lead to the use of a sensor with a suitable sensitive layer and to finding a suitable method of detecting individua! gaseous substances within one sensor. The aim is to find a suitable method to detect various gaseous substances acting on the sensor. For this purpose, modified impedance spectroscopy in the high-frequency range is applied, where the scattering parameters of the sensor based on carbon nanotubes are measured under the action of N02 and NH3 gases. For this method of detection of gaseous substances, a suitable sensor platform structure was designed to enable the measurement of the electrical properties of the sensor in the GHz range. Based on the obtained results, it is possible to use one sensor to detect different types of gaseous substances.
Abstract in different language: There are many gaseous substances that need to be monitored for possible damage to health or the environrnent. This requires many sensors. The solution to reducing the number of sensors is to use one sensor to detect several gaseous substances simultaneously. Efforts to simplify sensor systems thus lead to the use of a sensor with a suitable sensitive layer and to finding a suitable method of detecting individua! gaseous substances within one sensor. The aim is to find a suitable method to detect various gaseous substances acting on the sensor. For this purpose, modified impedance spectroscopy in the high-frequency range is applied, where the scattering parameters of the sensor based on carbon nanotubes are measured under the action of N02 and NH3 gases. For this method of detection of gaseous substances, a suitable sensor platform structure was designed to enable the measurement of the electrical properties of the sensor in the GHz range. Based on the obtained results, it is possible to use one sensor to detect different types of gaseous substances.
Rights: © authors
Appears in Collections:Články / Articles (KET)
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