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Thin Films of Polyaniline-Based Nanocomposites with CeO(2) and WO(3) Metal Oxides Applied to the Impedimetric and Capacitive Transducer Stages in Chemical Sensors

There is a recognized need for the development of cost-effective, stable, fast, and optimized novel materials for technological applications. Substantial research has been undertaken on the role of polymeric nanocomposites in sensing applications. However, the use of PANI-based nanocomposites in imp...

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Autores principales: Rossignatti, Beatriz Cotting, Vieira, Amanda Portes, Barbosa, Martin Schwellberger, Abegão, Luís Miguel Gomes, Mello, Hugo José Nogueira Pedroza Dias
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9920537/
https://www.ncbi.nlm.nih.gov/pubmed/36771879
http://dx.doi.org/10.3390/polym15030578
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author Rossignatti, Beatriz Cotting
Vieira, Amanda Portes
Barbosa, Martin Schwellberger
Abegão, Luís Miguel Gomes
Mello, Hugo José Nogueira Pedroza Dias
author_facet Rossignatti, Beatriz Cotting
Vieira, Amanda Portes
Barbosa, Martin Schwellberger
Abegão, Luís Miguel Gomes
Mello, Hugo José Nogueira Pedroza Dias
author_sort Rossignatti, Beatriz Cotting
collection PubMed
description There is a recognized need for the development of cost-effective, stable, fast, and optimized novel materials for technological applications. Substantial research has been undertaken on the role of polymeric nanocomposites in sensing applications. However, the use of PANI-based nanocomposites in impedimetric and capacitive electrochemical sensors has yet to be understood. The present study aimed to explore the relationship between the sensitivity and linearity of electrochemical pH sensors and the composition of nanocomposites. Thin films of PANI/CeO(2) and PANI/WO(3) were deposited via spin coating for characterization and application during the electrochemical impedance and capacitance spectroscopy (EIS and ECS) transduction stages. The findings showed that the optimized performance of the devices was extended not only to the sensitivity but also to the linearity. An increase of 213% in the ECS sensitivity of the PANI/CeO(2) compared to the metal oxide and an increase of 64% in the ECS linearity of the PANI/WO(3) compared to the polymeric sensitivity were reported. This study identified the structure–property relationship of nanocomposite thin films of PANI with metal oxides for use in electrochemical sensors. The developed materials could be applied in devices to be used in different fields, such as food, environment, and biomedical monitoring.
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spelling pubmed-99205372023-02-12 Thin Films of Polyaniline-Based Nanocomposites with CeO(2) and WO(3) Metal Oxides Applied to the Impedimetric and Capacitive Transducer Stages in Chemical Sensors Rossignatti, Beatriz Cotting Vieira, Amanda Portes Barbosa, Martin Schwellberger Abegão, Luís Miguel Gomes Mello, Hugo José Nogueira Pedroza Dias Polymers (Basel) Article There is a recognized need for the development of cost-effective, stable, fast, and optimized novel materials for technological applications. Substantial research has been undertaken on the role of polymeric nanocomposites in sensing applications. However, the use of PANI-based nanocomposites in impedimetric and capacitive electrochemical sensors has yet to be understood. The present study aimed to explore the relationship between the sensitivity and linearity of electrochemical pH sensors and the composition of nanocomposites. Thin films of PANI/CeO(2) and PANI/WO(3) were deposited via spin coating for characterization and application during the electrochemical impedance and capacitance spectroscopy (EIS and ECS) transduction stages. The findings showed that the optimized performance of the devices was extended not only to the sensitivity but also to the linearity. An increase of 213% in the ECS sensitivity of the PANI/CeO(2) compared to the metal oxide and an increase of 64% in the ECS linearity of the PANI/WO(3) compared to the polymeric sensitivity were reported. This study identified the structure–property relationship of nanocomposite thin films of PANI with metal oxides for use in electrochemical sensors. The developed materials could be applied in devices to be used in different fields, such as food, environment, and biomedical monitoring. MDPI 2023-01-22 /pmc/articles/PMC9920537/ /pubmed/36771879 http://dx.doi.org/10.3390/polym15030578 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Rossignatti, Beatriz Cotting
Vieira, Amanda Portes
Barbosa, Martin Schwellberger
Abegão, Luís Miguel Gomes
Mello, Hugo José Nogueira Pedroza Dias
Thin Films of Polyaniline-Based Nanocomposites with CeO(2) and WO(3) Metal Oxides Applied to the Impedimetric and Capacitive Transducer Stages in Chemical Sensors
title Thin Films of Polyaniline-Based Nanocomposites with CeO(2) and WO(3) Metal Oxides Applied to the Impedimetric and Capacitive Transducer Stages in Chemical Sensors
title_full Thin Films of Polyaniline-Based Nanocomposites with CeO(2) and WO(3) Metal Oxides Applied to the Impedimetric and Capacitive Transducer Stages in Chemical Sensors
title_fullStr Thin Films of Polyaniline-Based Nanocomposites with CeO(2) and WO(3) Metal Oxides Applied to the Impedimetric and Capacitive Transducer Stages in Chemical Sensors
title_full_unstemmed Thin Films of Polyaniline-Based Nanocomposites with CeO(2) and WO(3) Metal Oxides Applied to the Impedimetric and Capacitive Transducer Stages in Chemical Sensors
title_short Thin Films of Polyaniline-Based Nanocomposites with CeO(2) and WO(3) Metal Oxides Applied to the Impedimetric and Capacitive Transducer Stages in Chemical Sensors
title_sort thin films of polyaniline-based nanocomposites with ceo(2) and wo(3) metal oxides applied to the impedimetric and capacitive transducer stages in chemical sensors
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9920537/
https://www.ncbi.nlm.nih.gov/pubmed/36771879
http://dx.doi.org/10.3390/polym15030578
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