Hexakis[p-(hydroxymethyl)phenoxy]cyclotriphosphazene as an Environmentally Friendly Modifier for Polyurethane Powder Coatings with Increased Thermal Stability and Corrosion Resistance

Protection against fire and the corrosion of metals is necessary to ensure human safety. Most of the fire and corrosion inhibitors do not meet the ecological requirements. Therefore, effective and ecological methods of protecting metals are currently a challenge for researchers. In this work, the in...

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Published in:Materials Vol. 17; no. 11; p. 2672
Main Authors: Pilch-Pitera, Barbara, Czachor-Jadacka, Dominika, Byczyński, Łukasz, Dutkiewicz, Michał, Januszewski, Rafał, Kowalczyk, Krzysztof, Nowak, Wojciech J, Pojnar, Katarzyna
Format: Journal Article
Language:English
Published: Switzerland MDPI AG 01-06-2024
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Abstract Protection against fire and the corrosion of metals is necessary to ensure human safety. Most of the fire and corrosion inhibitors do not meet the ecological requirements. Therefore, effective and ecological methods of protecting metals are currently a challenge for researchers. In this work, the influence of hexakis(4-(hydroxymethyl)phenoxy)cyclotriphosphazene (HHPCP) on the characteristics of powder coatings was examined. The coatings' properties were investigated by measuring the roughness, hardness, adhesion to the steel surface, cupping, gloss, scratch resistance, and water contact angle. The thermal stability was studied by furnace test and TGA analysis. The corrosion resistance test was carried out in a 3.5% NaCl solution. The distribution of phosphazene-derived segments in the coating was examined by GD-EOS analysis. Modified coatings show better corrosion and thermal resistance and can be used for the protection of the steel surface. Their better corrosion resistance is due to the electroactive properties of the phosphazene ring and its higher concentration at the coating surface, confirmed by GD-EOS analysis. The increase in thermal resistance is due to the effect of the formation of phosphoric metaphosphoric and polyphosphoric acids during the decomposition of HHCPC, which remain in the condensed char phase and play a crucial role in surface protection.
AbstractList Protection against fire and the corrosion of metals is necessary to ensure human safety. Most of the fire and corrosion inhibitors do not meet the ecological requirements. Therefore, effective and ecological methods of protecting metals are currently a challenge for researchers. In this work, the influence of hexakis(4-(hydroxymethyl)phenoxy)cyclotriphosphazene (HHPCP) on the characteristics of powder coatings was examined. The coatings’ properties were investigated by measuring the roughness, hardness, adhesion to the steel surface, cupping, gloss, scratch resistance, and water contact angle. The thermal stability was studied by furnace test and TGA analysis. The corrosion resistance test was carried out in a 3.5% NaCl solution. The distribution of phosphazene-derived segments in the coating was examined by GD-EOS analysis. Modified coatings show better corrosion and thermal resistance and can be used for the protection of the steel surface. Their better corrosion resistance is due to the electroactive properties of the phosphazene ring and its higher concentration at the coating surface, confirmed by GD-EOS analysis. The increase in thermal resistance is due to the effect of the formation of phosphoric metaphosphoric and polyphosphoric acids during the decomposition of HHCPC, which remain in the condensed char phase and play a crucial role in surface protection.
Audience Academic
Author Czachor-Jadacka, Dominika
Byczyński, Łukasz
Dutkiewicz, Michał
Pilch-Pitera, Barbara
Kowalczyk, Krzysztof
Pojnar, Katarzyna
Nowak, Wojciech J
Januszewski, Rafał
AuthorAffiliation 7 Doctoral School of Engineering and Technical Sciences at the Rzeszow University of Technology, al. Powstańców Warszawy 12, 35-959 Rzeszow, Poland; d521@stud.prz.edu.pl
2 Poznan Science and Technology Park, Adam Mickiewicz University Foundation, Rubież 46, 61-612 Poznan, Poland; midu@ppnt.poznan.pl
6 Faculty of Mechanical Engineering and Aeronautics, Department of Materials Science, Rzeszow University of Technology, al. Powstańców Warszawy 8, 35-959 Rzeszow, Poland; wjnowak@prz.edu.pl
1 Faculty of Chemistry, Department of Polymers and Biopolymers, Rzeszow University of Technology, al. Powstańców Warszawy 6, 35-959 Rzeszow, Poland; d.czachor94@gmail.com (D.C.-J.); lbyczynski@prz.edu.pl (Ł.B.)
3 Faculty of Chemistry, Adam Mickiewicz University in Poznan, Umultowska 89B, ul. Uniwersytetu Poznańskiego 8, 61-614 Poznan, Poland; r.janusz@amu.edu.pl
4 Center for Advanced Technology, Adam Mickiewicz University in Poznan, ul. Uniwersytetu Poznańskiego 10, 61-614 Poznan, Poland
5 Faculty of Chemical
AuthorAffiliation_xml – name: 5 Faculty of Chemical Technology and Engineering, Polymer Institute, West Pomeranian University of Technology in Szczecin, ul. Pułaskiego 10, 70-322 Szczecin, Poland; krzysztof.kowalczyk@zut.edu.pl
– name: 3 Faculty of Chemistry, Adam Mickiewicz University in Poznan, Umultowska 89B, ul. Uniwersytetu Poznańskiego 8, 61-614 Poznan, Poland; r.janusz@amu.edu.pl
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– name: 1 Faculty of Chemistry, Department of Polymers and Biopolymers, Rzeszow University of Technology, al. Powstańców Warszawy 6, 35-959 Rzeszow, Poland; d.czachor94@gmail.com (D.C.-J.); lbyczynski@prz.edu.pl (Ł.B.)
– name: 6 Faculty of Mechanical Engineering and Aeronautics, Department of Materials Science, Rzeszow University of Technology, al. Powstańców Warszawy 8, 35-959 Rzeszow, Poland; wjnowak@prz.edu.pl
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BackLink https://www.ncbi.nlm.nih.gov/pubmed/38893936$$D View this record in MEDLINE/PubMed
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Issue 11
Keywords thermal stability
powder coatings
hexakis(4-(hydroxymethyl)phenoxy)cyclotriphosphazene
anticorrosion protection
Language English
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SubjectTerms Aviation
Boron
Contact angle
Corrosion
Corrosion inhibitors
Corrosion resistance
Corrosion resistant steels
Corrosion tests
Ductility tests
Epoxy resins
Fire resistance
Flame retardants
Flammable materials
Furnaces
Gloss
Heat resistance
Heat transfer
Mechanical properties
Phosphazene
Polymers
Polyurethane resins
Powder coatings
Powders
Protective coatings
Scratch resistance
Steel
Thermal resistance
Thermal stability
VOCs
Volatile organic compounds
Title Hexakis[p-(hydroxymethyl)phenoxy]cyclotriphosphazene as an Environmentally Friendly Modifier for Polyurethane Powder Coatings with Increased Thermal Stability and Corrosion Resistance
URI https://www.ncbi.nlm.nih.gov/pubmed/38893936
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https://pubmed.ncbi.nlm.nih.gov/PMC11174046
Volume 17
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