Modeling of the Function Principle of Semiconductor Gas Sensors for High School Students
A wide range of pollutants cannot be perceived with human senses, which is why theuse of gas sensors is indispensable for an objective assessment of air quality. Sincemany pollutants are both odorless and colorless, there is a lack of awareness, inparticular among high school students. The project S...
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International Association of Online Engineering (IAOE)
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doaj-85f6ce5385624a90957576c8d17c224b2021-09-02T18:47:23ZengInternational Association of Online Engineering (IAOE)International Journal of Online and Biomedical Engineering2626-84932021-03-01170352510.3991/ijoe.v17i03.192137489Modeling of the Function Principle of Semiconductor Gas Sensors for High School StudentsSebastian Höfner0Michael Hirth1Jochen Kuhn2Benjamin Brück3Andreas Schütze4Laboratory for Measurement Technology, Saarland University, 66123 Saarbrücken, GermanyPhysics Education Research Group at the Department of Physics, TU Kaiserslautern, 67663 Kaiserslautern GermanyPhysics Education Research Group at the Department of Physics, TU Kaiserslautern, 67663 Kaiserslautern GermanyStudent Research Center SaarlouisLaboratory for Measurement Technology, Saarland University, 66123 Saarbrücken, GermanyA wide range of pollutants cannot be perceived with human senses, which is why theuse of gas sensors is indispensable for an objective assessment of air quality. Sincemany pollutants are both odorless and colorless, there is a lack of awareness, inparticular among high school students. The project SUSmobil (funded by DBU –Deutsche Bundesstiftung Umwelt) aims to change this. In three modules on the topic ofgas sensors and air quality, the students (1) are familiarized with the functionality of ametal oxide semiconductor (MOS) gas sensor, (2) perform a sensor calibration and (3)carry out environmental measurements with calibrated sensors. Based on theseintroductory experiments, the students are encouraged to develop their ownenvironmental questions. In this contribution, we focus on the experimental andmodeling approach which explains the function principle of a MOS gas sensor in a waysuitable for high school students. This includes a qualitative and quantitativedescription of a simplified sensor model explaining the main processes on the sensorsurface. In addition, an HTML-based self-learning course is presented in which thestudents investigate the sensor behavior in the presence of different substancesdepending on the sensor temperature.https://online-journals.org/index.php/i-joe/article/view/19213air pollutionmetal oxide semiconductor gas sensorstudent experimenteducationvolatile organic compoundshigh school |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Sebastian Höfner Michael Hirth Jochen Kuhn Benjamin Brück Andreas Schütze |
spellingShingle |
Sebastian Höfner Michael Hirth Jochen Kuhn Benjamin Brück Andreas Schütze Modeling of the Function Principle of Semiconductor Gas Sensors for High School Students International Journal of Online and Biomedical Engineering air pollution metal oxide semiconductor gas sensor student experiment education volatile organic compounds high school |
author_facet |
Sebastian Höfner Michael Hirth Jochen Kuhn Benjamin Brück Andreas Schütze |
author_sort |
Sebastian Höfner |
title |
Modeling of the Function Principle of Semiconductor Gas Sensors for High School Students |
title_short |
Modeling of the Function Principle of Semiconductor Gas Sensors for High School Students |
title_full |
Modeling of the Function Principle of Semiconductor Gas Sensors for High School Students |
title_fullStr |
Modeling of the Function Principle of Semiconductor Gas Sensors for High School Students |
title_full_unstemmed |
Modeling of the Function Principle of Semiconductor Gas Sensors for High School Students |
title_sort |
modeling of the function principle of semiconductor gas sensors for high school students |
publisher |
International Association of Online Engineering (IAOE) |
series |
International Journal of Online and Biomedical Engineering |
issn |
2626-8493 |
publishDate |
2021-03-01 |
description |
A wide range of pollutants cannot be perceived with human senses, which is why theuse of gas sensors is indispensable for an objective assessment of air quality. Sincemany pollutants are both odorless and colorless, there is a lack of awareness, inparticular among high school students. The project SUSmobil (funded by DBU –Deutsche Bundesstiftung Umwelt) aims to change this. In three modules on the topic ofgas sensors and air quality, the students (1) are familiarized with the functionality of ametal oxide semiconductor (MOS) gas sensor, (2) perform a sensor calibration and (3)carry out environmental measurements with calibrated sensors. Based on theseintroductory experiments, the students are encouraged to develop their ownenvironmental questions. In this contribution, we focus on the experimental andmodeling approach which explains the function principle of a MOS gas sensor in a waysuitable for high school students. This includes a qualitative and quantitativedescription of a simplified sensor model explaining the main processes on the sensorsurface. In addition, an HTML-based self-learning course is presented in which thestudents investigate the sensor behavior in the presence of different substancesdepending on the sensor temperature. |
topic |
air pollution metal oxide semiconductor gas sensor student experiment education volatile organic compounds high school |
url |
https://online-journals.org/index.php/i-joe/article/view/19213 |
work_keys_str_mv |
AT sebastianhofner modelingofthefunctionprincipleofsemiconductorgassensorsforhighschoolstudents AT michaelhirth modelingofthefunctionprincipleofsemiconductorgassensorsforhighschoolstudents AT jochenkuhn modelingofthefunctionprincipleofsemiconductorgassensorsforhighschoolstudents AT benjaminbruck modelingofthefunctionprincipleofsemiconductorgassensorsforhighschoolstudents AT andreasschutze modelingofthefunctionprincipleofsemiconductorgassensorsforhighschoolstudents |
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