Direct Printing of a Multi-Layer Sensor on Pet Substrate for CO<sub>2</sub> Detection
The use of inexpensive gas sensors is a real need for many applications requiring the use of disposable sensors. This work deals with the realization and characterization of a low cost CO<sub>2</sub> sensor realized by rapid prototyping techniques. In particular, the sensor consists of a...
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Online Access: | https://www.mdpi.com/1996-1073/12/3/557 |
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doaj-a75df8a9be724a3fa3c0be5d423a749c2020-11-24T23:30:43ZengMDPI AGEnergies1996-10732019-02-0112355710.3390/en12030557en12030557Direct Printing of a Multi-Layer Sensor on Pet Substrate for CO<sub>2</sub> DetectionBruno Andò0Salvatore Baglio1Giovanna Di Pasquale2Antonio Pollicino3Salvatore Graziani4Chiara Gugliuzzo5Cristian Lombardo6Vicenzo Marletta7DIEEI University of Catania, v.le A. Doria 6, 95127 Catania, ItalyDIEEI University of Catania, v.le A. Doria 6, 95127 Catania, ItalyDII University of Catania, v.le A. Doria 6, 95127 Catania, ItalyDII University of Catania, v.le A. Doria 6, 95127 Catania, ItalyDIEEI University of Catania, v.le A. Doria 6, 95127 Catania, ItalyDII University of Catania, v.le A. Doria 6, 95127 Catania, ItalyDIEEI University of Catania, v.le A. Doria 6, 95127 Catania, ItalyDIEEI University of Catania, v.le A. Doria 6, 95127 Catania, ItalyThe use of inexpensive gas sensors is a real need for many applications requiring the use of disposable sensors. This work deals with the realization and characterization of a low cost CO<sub>2</sub> sensor realized by rapid prototyping techniques. In particular, the sensor consists of a set of InterDigiTed electrodes, over which a double sensing layer made of PEDOT/PSS (CLEVIOS™ PHCV4, by H.C.Starck) and a solution of pristine graphene powder has been deposited. A silver nano-particle solution is used for inkjet printing the electrodes onto the PET (PolyEthylene Terephthalate) substrate, through a commercial inkjet printer. The sensing strategy is based on the variation of the electrical conductance of graphene due to gas molecules adsorption. The device responsivity observed in two different operating conditions (50 °C and 60 °C), is 4.0 µΩ/Ω/ppm and 4.7 µΩ/Ω/ppm. The corresponding values of the resolution are 400 ppm and 420 ppm. Main advantages of the developed sensor consist in the cost-effective fabrication techniques and the device flexibility, which are strategic for applications requiring disposable and shapeable devices to be installed into irregular surfaces.https://www.mdpi.com/1996-1073/12/3/557CO<sub>2</sub> monitoringinkjet printinggas sensorPEDOT/PSSgrapheneinterdigited electrodesflexible substrate |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Bruno Andò Salvatore Baglio Giovanna Di Pasquale Antonio Pollicino Salvatore Graziani Chiara Gugliuzzo Cristian Lombardo Vicenzo Marletta |
spellingShingle |
Bruno Andò Salvatore Baglio Giovanna Di Pasquale Antonio Pollicino Salvatore Graziani Chiara Gugliuzzo Cristian Lombardo Vicenzo Marletta Direct Printing of a Multi-Layer Sensor on Pet Substrate for CO<sub>2</sub> Detection Energies CO<sub>2</sub> monitoring inkjet printing gas sensor PEDOT/PSS graphene interdigited electrodes flexible substrate |
author_facet |
Bruno Andò Salvatore Baglio Giovanna Di Pasquale Antonio Pollicino Salvatore Graziani Chiara Gugliuzzo Cristian Lombardo Vicenzo Marletta |
author_sort |
Bruno Andò |
title |
Direct Printing of a Multi-Layer Sensor on Pet Substrate for CO<sub>2</sub> Detection |
title_short |
Direct Printing of a Multi-Layer Sensor on Pet Substrate for CO<sub>2</sub> Detection |
title_full |
Direct Printing of a Multi-Layer Sensor on Pet Substrate for CO<sub>2</sub> Detection |
title_fullStr |
Direct Printing of a Multi-Layer Sensor on Pet Substrate for CO<sub>2</sub> Detection |
title_full_unstemmed |
Direct Printing of a Multi-Layer Sensor on Pet Substrate for CO<sub>2</sub> Detection |
title_sort |
direct printing of a multi-layer sensor on pet substrate for co<sub>2</sub> detection |
publisher |
MDPI AG |
series |
Energies |
issn |
1996-1073 |
publishDate |
2019-02-01 |
description |
The use of inexpensive gas sensors is a real need for many applications requiring the use of disposable sensors. This work deals with the realization and characterization of a low cost CO<sub>2</sub> sensor realized by rapid prototyping techniques. In particular, the sensor consists of a set of InterDigiTed electrodes, over which a double sensing layer made of PEDOT/PSS (CLEVIOS™ PHCV4, by H.C.Starck) and a solution of pristine graphene powder has been deposited. A silver nano-particle solution is used for inkjet printing the electrodes onto the PET (PolyEthylene Terephthalate) substrate, through a commercial inkjet printer. The sensing strategy is based on the variation of the electrical conductance of graphene due to gas molecules adsorption. The device responsivity observed in two different operating conditions (50 °C and 60 °C), is 4.0 µΩ/Ω/ppm and 4.7 µΩ/Ω/ppm. The corresponding values of the resolution are 400 ppm and 420 ppm. Main advantages of the developed sensor consist in the cost-effective fabrication techniques and the device flexibility, which are strategic for applications requiring disposable and shapeable devices to be installed into irregular surfaces. |
topic |
CO<sub>2</sub> monitoring inkjet printing gas sensor PEDOT/PSS graphene interdigited electrodes flexible substrate |
url |
https://www.mdpi.com/1996-1073/12/3/557 |
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