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Effect of Aromatic Chain Extenders on Polyurea and Polyurethane Coatings Designed for Defense Applications

The present work describes the synthesis of new versatile polyurea (PU) and polyurethane (PUR) matrices, including different chain extenders, which facilitate the design of distinct, tunable properties, and high-performance derivatives. These polymers can be used for various defense and security app...

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Autores principales: Toader, Gabriela, Moldovan, Andreea Elena, Diacon, Aurel, Dirloman, Florin Marian, Rusen, Edina, Podaru, Alice, Rotariu, Traian, Ginghina, Raluca Elena, Hoza, Oana Elisabeta
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9920908/
https://www.ncbi.nlm.nih.gov/pubmed/36772057
http://dx.doi.org/10.3390/polym15030756
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author Toader, Gabriela
Moldovan, Andreea Elena
Diacon, Aurel
Dirloman, Florin Marian
Rusen, Edina
Podaru, Alice
Rotariu, Traian
Ginghina, Raluca Elena
Hoza, Oana Elisabeta
author_facet Toader, Gabriela
Moldovan, Andreea Elena
Diacon, Aurel
Dirloman, Florin Marian
Rusen, Edina
Podaru, Alice
Rotariu, Traian
Ginghina, Raluca Elena
Hoza, Oana Elisabeta
author_sort Toader, Gabriela
collection PubMed
description The present work describes the synthesis of new versatile polyurea (PU) and polyurethane (PUR) matrices, including different chain extenders, which facilitate the design of distinct, tunable properties, and high-performance derivatives. These polymers can be used for various defense and security applications, such as coatings for ballistic protection, CBRN protection, binders for energetic formulations, etc. Combining aliphatic and aromatic molecules in PU or PUR structures enables the synthesis of polymers with improved and controllable thermo-mechanical properties. Thus, for polyurea synthesis, we utilized two types of polymeric aliphatic diamines and three types of aromatic chain extenders (1,1’-biphenyl-4,4’-diamine, benzene-1,2-diamine, and 1,2-diphenylhydrazine). An analogous method was used to synthesize polyurethane films by employing one polymeric aliphatic polyol and three types of aromatic chain extenders (benzene-1,3-diol, benzene-1,4-diol, and benzene-1,2,3-triol). Subsequently, various analytic techniques (Fourier transform infrared spectroscopy–attenuated total reflectance (FTIR-ATR), single cantilever dynamic mechanical analysis (DMA), thermogravimetric analysis (TGA), frequency-dependent shear modulus survey, tensile tests, water contact angle measurements, and scanning electron microscopy (SEM) with energy-dispersive X-ray analysis (EDX)) have been utilized to characterize the synthesized materials and to evaluate the influence of each chain extender on their final properties.
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spelling pubmed-99209082023-02-12 Effect of Aromatic Chain Extenders on Polyurea and Polyurethane Coatings Designed for Defense Applications Toader, Gabriela Moldovan, Andreea Elena Diacon, Aurel Dirloman, Florin Marian Rusen, Edina Podaru, Alice Rotariu, Traian Ginghina, Raluca Elena Hoza, Oana Elisabeta Polymers (Basel) Article The present work describes the synthesis of new versatile polyurea (PU) and polyurethane (PUR) matrices, including different chain extenders, which facilitate the design of distinct, tunable properties, and high-performance derivatives. These polymers can be used for various defense and security applications, such as coatings for ballistic protection, CBRN protection, binders for energetic formulations, etc. Combining aliphatic and aromatic molecules in PU or PUR structures enables the synthesis of polymers with improved and controllable thermo-mechanical properties. Thus, for polyurea synthesis, we utilized two types of polymeric aliphatic diamines and three types of aromatic chain extenders (1,1’-biphenyl-4,4’-diamine, benzene-1,2-diamine, and 1,2-diphenylhydrazine). An analogous method was used to synthesize polyurethane films by employing one polymeric aliphatic polyol and three types of aromatic chain extenders (benzene-1,3-diol, benzene-1,4-diol, and benzene-1,2,3-triol). Subsequently, various analytic techniques (Fourier transform infrared spectroscopy–attenuated total reflectance (FTIR-ATR), single cantilever dynamic mechanical analysis (DMA), thermogravimetric analysis (TGA), frequency-dependent shear modulus survey, tensile tests, water contact angle measurements, and scanning electron microscopy (SEM) with energy-dispersive X-ray analysis (EDX)) have been utilized to characterize the synthesized materials and to evaluate the influence of each chain extender on their final properties. MDPI 2023-02-02 /pmc/articles/PMC9920908/ /pubmed/36772057 http://dx.doi.org/10.3390/polym15030756 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
Toader, Gabriela
Moldovan, Andreea Elena
Diacon, Aurel
Dirloman, Florin Marian
Rusen, Edina
Podaru, Alice
Rotariu, Traian
Ginghina, Raluca Elena
Hoza, Oana Elisabeta
Effect of Aromatic Chain Extenders on Polyurea and Polyurethane Coatings Designed for Defense Applications
title Effect of Aromatic Chain Extenders on Polyurea and Polyurethane Coatings Designed for Defense Applications
title_full Effect of Aromatic Chain Extenders on Polyurea and Polyurethane Coatings Designed for Defense Applications
title_fullStr Effect of Aromatic Chain Extenders on Polyurea and Polyurethane Coatings Designed for Defense Applications
title_full_unstemmed Effect of Aromatic Chain Extenders on Polyurea and Polyurethane Coatings Designed for Defense Applications
title_short Effect of Aromatic Chain Extenders on Polyurea and Polyurethane Coatings Designed for Defense Applications
title_sort effect of aromatic chain extenders on polyurea and polyurethane coatings designed for defense applications
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9920908/
https://www.ncbi.nlm.nih.gov/pubmed/36772057
http://dx.doi.org/10.3390/polym15030756
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