Method to Study Water Diffusion into Polymers

We designed and realized a low cost relative humidity (RH) capacitive sensor having an interdigitated transducer coated with a cheap sensing material working at room temperature (polyimide). Thermally perturbed diffusion of water molecules into the polyimide layer is studied by heating the sensor lo...

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Main Authors: Jamila Boudaden, Matthias Steinmaßl, Hanns-Erik Endres, Peter Müller-Buschbaum
Format: Article
Language:English
Published: MDPI AG 2018-11-01
Series:Proceedings
Subjects:
Online Access:https://www.mdpi.com/2504-3900/2/13/812
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spelling doaj-354250c849fe4d9aa36dbfe5e3cdc8732020-11-24T22:57:26ZengMDPI AGProceedings2504-39002018-11-0121381210.3390/proceedings2130812proceedings2130812Method to Study Water Diffusion into PolymersJamila Boudaden0Matthias Steinmaßl1Hanns-Erik Endres2Peter Müller-Buschbaum3Fraunhofer EMFT, Research Institution for Microsystems and Solid State Technologies EMFT, Hansastraße 27d, D-80686 Munich, GermanyFraunhofer EMFT, Research Institution for Microsystems and Solid State Technologies EMFT, Hansastraße 27d, D-80686 Munich, GermanyFraunhofer EMFT, Research Institution for Microsystems and Solid State Technologies EMFT, Hansastraße 27d, D-80686 Munich, GermanyPhysik-Department, Lehrstuhl für Funktionelle Materialien, Technische Universität München, James-Franck-Strasse 1, D-85748 Garching, GermanyWe designed and realized a low cost relative humidity (RH) capacitive sensor having an interdigitated transducer coated with a cheap sensing material working at room temperature (polyimide). Thermally perturbed diffusion of water molecules into the polyimide layer is studied by heating the sensor locally and measuring the sensor capacitance change. The swelling and deswelling model is applied to determine the time constant of involved processes. This simple method, using an evaluation kit developed by our group, to measure the sensor capacitance and to study the diffusion process of water molecules into polyimide could be generalized to analyze the gas diffusion processes into polymer based sensing layer generally used in the field of gas chemical sensors.https://www.mdpi.com/2504-3900/2/13/812polyimiderelative humidity sensorinterdigitated transducer IDT’sthermal stressthermoresponsive polymer
collection DOAJ
language English
format Article
sources DOAJ
author Jamila Boudaden
Matthias Steinmaßl
Hanns-Erik Endres
Peter Müller-Buschbaum
spellingShingle Jamila Boudaden
Matthias Steinmaßl
Hanns-Erik Endres
Peter Müller-Buschbaum
Method to Study Water Diffusion into Polymers
Proceedings
polyimide
relative humidity sensor
interdigitated transducer IDT’s
thermal stress
thermoresponsive polymer
author_facet Jamila Boudaden
Matthias Steinmaßl
Hanns-Erik Endres
Peter Müller-Buschbaum
author_sort Jamila Boudaden
title Method to Study Water Diffusion into Polymers
title_short Method to Study Water Diffusion into Polymers
title_full Method to Study Water Diffusion into Polymers
title_fullStr Method to Study Water Diffusion into Polymers
title_full_unstemmed Method to Study Water Diffusion into Polymers
title_sort method to study water diffusion into polymers
publisher MDPI AG
series Proceedings
issn 2504-3900
publishDate 2018-11-01
description We designed and realized a low cost relative humidity (RH) capacitive sensor having an interdigitated transducer coated with a cheap sensing material working at room temperature (polyimide). Thermally perturbed diffusion of water molecules into the polyimide layer is studied by heating the sensor locally and measuring the sensor capacitance change. The swelling and deswelling model is applied to determine the time constant of involved processes. This simple method, using an evaluation kit developed by our group, to measure the sensor capacitance and to study the diffusion process of water molecules into polyimide could be generalized to analyze the gas diffusion processes into polymer based sensing layer generally used in the field of gas chemical sensors.
topic polyimide
relative humidity sensor
interdigitated transducer IDT’s
thermal stress
thermoresponsive polymer
url https://www.mdpi.com/2504-3900/2/13/812
work_keys_str_mv AT jamilaboudaden methodtostudywaterdiffusionintopolymers
AT matthiassteinmaßl methodtostudywaterdiffusionintopolymers
AT hannserikendres methodtostudywaterdiffusionintopolymers
AT petermullerbuschbaum methodtostudywaterdiffusionintopolymers
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