Cargando…

Corrosion Resistance and Electrical Conductivity of Hybrid Coatings Obtained from Polysiloxane and Carbon Nanotubes by Electrophoretic Co-Deposition

Nanocomposites developed based on siloxanes modified with carbon nanoforms are materials with great application potential in the electronics industry, medicine and environmental protection. This follows from the fact that such nanocomposites can be endowed with biocompatibility characteristics, elec...

Descripción completa

Detalles Bibliográficos
Autores principales: Bezkosty, Patryk, Długoń, Elżbieta, Sowa, Maciej, Nizioł, Jacek, Jeleń, Piotr, Marchewka, Jakub, Błażewicz, Marta, Sitarz, Maciej
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8910870/
https://www.ncbi.nlm.nih.gov/pubmed/35270038
http://dx.doi.org/10.3390/ijms23052897
_version_ 1784666602312040448
author Bezkosty, Patryk
Długoń, Elżbieta
Sowa, Maciej
Nizioł, Jacek
Jeleń, Piotr
Marchewka, Jakub
Błażewicz, Marta
Sitarz, Maciej
author_facet Bezkosty, Patryk
Długoń, Elżbieta
Sowa, Maciej
Nizioł, Jacek
Jeleń, Piotr
Marchewka, Jakub
Błażewicz, Marta
Sitarz, Maciej
author_sort Bezkosty, Patryk
collection PubMed
description Nanocomposites developed based on siloxanes modified with carbon nanoforms are materials with great application potential in the electronics industry, medicine and environmental protection. This follows from the fact that such nanocomposites can be endowed with biocompatibility characteristics, electric conductivity and a high mechanical durability. Moreover, their surface, depending on the type and the amount of carbon nanoparticles, may exhibit antifouling properties, as well as those that limit bacterial adhesion. The paper reports on the properties of polysiloxane (PS) and carbon nanotubes (CNT) nanocomposite coatings on metal surfaces produced by the electrophoretic deposition (EPD). A comparison with coatings made of pure PS or pure CNT on the same substrates using the same deposition method (EPD) is provided. The coatings were examined for morphology and elemental composition (SEM, EDS), structural characteristics (confocal Raman spectroscopy), electrical conductivity and were tested for corrosion (electrochemical impedance spectroscopy-EIS, potentiodynamic polarization-PDP). The results obtained in this study clearly evidenced that such hybrid coatings conduct electricity and protect the metal from corrosion. However, their corrosion resistance differs slightly from that of a pure polymeric coating.
format Online
Article
Text
id pubmed-8910870
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-89108702022-03-11 Corrosion Resistance and Electrical Conductivity of Hybrid Coatings Obtained from Polysiloxane and Carbon Nanotubes by Electrophoretic Co-Deposition Bezkosty, Patryk Długoń, Elżbieta Sowa, Maciej Nizioł, Jacek Jeleń, Piotr Marchewka, Jakub Błażewicz, Marta Sitarz, Maciej Int J Mol Sci Article Nanocomposites developed based on siloxanes modified with carbon nanoforms are materials with great application potential in the electronics industry, medicine and environmental protection. This follows from the fact that such nanocomposites can be endowed with biocompatibility characteristics, electric conductivity and a high mechanical durability. Moreover, their surface, depending on the type and the amount of carbon nanoparticles, may exhibit antifouling properties, as well as those that limit bacterial adhesion. The paper reports on the properties of polysiloxane (PS) and carbon nanotubes (CNT) nanocomposite coatings on metal surfaces produced by the electrophoretic deposition (EPD). A comparison with coatings made of pure PS or pure CNT on the same substrates using the same deposition method (EPD) is provided. The coatings were examined for morphology and elemental composition (SEM, EDS), structural characteristics (confocal Raman spectroscopy), electrical conductivity and were tested for corrosion (electrochemical impedance spectroscopy-EIS, potentiodynamic polarization-PDP). The results obtained in this study clearly evidenced that such hybrid coatings conduct electricity and protect the metal from corrosion. However, their corrosion resistance differs slightly from that of a pure polymeric coating. MDPI 2022-03-07 /pmc/articles/PMC8910870/ /pubmed/35270038 http://dx.doi.org/10.3390/ijms23052897 Text en © 2022 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
Bezkosty, Patryk
Długoń, Elżbieta
Sowa, Maciej
Nizioł, Jacek
Jeleń, Piotr
Marchewka, Jakub
Błażewicz, Marta
Sitarz, Maciej
Corrosion Resistance and Electrical Conductivity of Hybrid Coatings Obtained from Polysiloxane and Carbon Nanotubes by Electrophoretic Co-Deposition
title Corrosion Resistance and Electrical Conductivity of Hybrid Coatings Obtained from Polysiloxane and Carbon Nanotubes by Electrophoretic Co-Deposition
title_full Corrosion Resistance and Electrical Conductivity of Hybrid Coatings Obtained from Polysiloxane and Carbon Nanotubes by Electrophoretic Co-Deposition
title_fullStr Corrosion Resistance and Electrical Conductivity of Hybrid Coatings Obtained from Polysiloxane and Carbon Nanotubes by Electrophoretic Co-Deposition
title_full_unstemmed Corrosion Resistance and Electrical Conductivity of Hybrid Coatings Obtained from Polysiloxane and Carbon Nanotubes by Electrophoretic Co-Deposition
title_short Corrosion Resistance and Electrical Conductivity of Hybrid Coatings Obtained from Polysiloxane and Carbon Nanotubes by Electrophoretic Co-Deposition
title_sort corrosion resistance and electrical conductivity of hybrid coatings obtained from polysiloxane and carbon nanotubes by electrophoretic co-deposition
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8910870/
https://www.ncbi.nlm.nih.gov/pubmed/35270038
http://dx.doi.org/10.3390/ijms23052897
work_keys_str_mv AT bezkostypatryk corrosionresistanceandelectricalconductivityofhybridcoatingsobtainedfrompolysiloxaneandcarbonnanotubesbyelectrophoreticcodeposition
AT długonelzbieta corrosionresistanceandelectricalconductivityofhybridcoatingsobtainedfrompolysiloxaneandcarbonnanotubesbyelectrophoreticcodeposition
AT sowamaciej corrosionresistanceandelectricalconductivityofhybridcoatingsobtainedfrompolysiloxaneandcarbonnanotubesbyelectrophoreticcodeposition
AT niziołjacek corrosionresistanceandelectricalconductivityofhybridcoatingsobtainedfrompolysiloxaneandcarbonnanotubesbyelectrophoreticcodeposition
AT jelenpiotr corrosionresistanceandelectricalconductivityofhybridcoatingsobtainedfrompolysiloxaneandcarbonnanotubesbyelectrophoreticcodeposition
AT marchewkajakub corrosionresistanceandelectricalconductivityofhybridcoatingsobtainedfrompolysiloxaneandcarbonnanotubesbyelectrophoreticcodeposition
AT błazewiczmarta corrosionresistanceandelectricalconductivityofhybridcoatingsobtainedfrompolysiloxaneandcarbonnanotubesbyelectrophoreticcodeposition
AT sitarzmaciej corrosionresistanceandelectricalconductivityofhybridcoatingsobtainedfrompolysiloxaneandcarbonnanotubesbyelectrophoreticcodeposition