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Understanding the Effect of Side Reactions on the Recyclability of Furan–Maleimide Resins Based on Thermoreversible Diels–Alder Network

We studied the effect of side reactions on the reversibility of epoxy with thermoreversible Diels–Alder (DA) cycloadducts based on furan and maleimide chemistry. The most common side reaction is the maleimide homopolymerization which introduces irreversible crosslinking in the network adversely affe...

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Autores principales: McReynolds, Brandon T., Mojtabai, Kavon D., Penners, Nicole, Kim, Gaeun, Lindholm, Samantha, Lee, Youngmin, McCoy, John D., Chowdhury, Sanchari
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10007558/
https://www.ncbi.nlm.nih.gov/pubmed/36904347
http://dx.doi.org/10.3390/polym15051106
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author McReynolds, Brandon T.
Mojtabai, Kavon D.
Penners, Nicole
Kim, Gaeun
Lindholm, Samantha
Lee, Youngmin
McCoy, John D.
Chowdhury, Sanchari
author_facet McReynolds, Brandon T.
Mojtabai, Kavon D.
Penners, Nicole
Kim, Gaeun
Lindholm, Samantha
Lee, Youngmin
McCoy, John D.
Chowdhury, Sanchari
author_sort McReynolds, Brandon T.
collection PubMed
description We studied the effect of side reactions on the reversibility of epoxy with thermoreversible Diels–Alder (DA) cycloadducts based on furan and maleimide chemistry. The most common side reaction is the maleimide homopolymerization which introduces irreversible crosslinking in the network adversely affecting the recyclability. The main challenge is that the temperatures at which maleimide homopolymerization can occur are approximately the same as the temperatures at which retro-DA (rDA) reactions depolymerize the networks. Here we conducted detailed studies on three different strategies to minimize the effect of the side reaction. First, we controlled the ratio of maleimide to furan to reduce the concentration of maleimide groups which diminishes the effects of the side reaction. Second, we applied a radical-reaction inhibitor. Inclusion of hydroquinone, a known free radical scavenger, is found to retard the onset of the side reaction both in the temperature sweep and isothermal measurements. Finally, we employed a new trismaleimide precursor that has a lower maleimide concentration and reduces the rate of the side reaction. Our results provide insights into how to minimize formation of irreversible crosslinking by side reactions in reversible DA materials using maleimides, which is important for their application as novel self-healing, recyclable, and 3D-printable materials.
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spelling pubmed-100075582023-03-12 Understanding the Effect of Side Reactions on the Recyclability of Furan–Maleimide Resins Based on Thermoreversible Diels–Alder Network McReynolds, Brandon T. Mojtabai, Kavon D. Penners, Nicole Kim, Gaeun Lindholm, Samantha Lee, Youngmin McCoy, John D. Chowdhury, Sanchari Polymers (Basel) Article We studied the effect of side reactions on the reversibility of epoxy with thermoreversible Diels–Alder (DA) cycloadducts based on furan and maleimide chemistry. The most common side reaction is the maleimide homopolymerization which introduces irreversible crosslinking in the network adversely affecting the recyclability. The main challenge is that the temperatures at which maleimide homopolymerization can occur are approximately the same as the temperatures at which retro-DA (rDA) reactions depolymerize the networks. Here we conducted detailed studies on three different strategies to minimize the effect of the side reaction. First, we controlled the ratio of maleimide to furan to reduce the concentration of maleimide groups which diminishes the effects of the side reaction. Second, we applied a radical-reaction inhibitor. Inclusion of hydroquinone, a known free radical scavenger, is found to retard the onset of the side reaction both in the temperature sweep and isothermal measurements. Finally, we employed a new trismaleimide precursor that has a lower maleimide concentration and reduces the rate of the side reaction. Our results provide insights into how to minimize formation of irreversible crosslinking by side reactions in reversible DA materials using maleimides, which is important for their application as novel self-healing, recyclable, and 3D-printable materials. MDPI 2023-02-23 /pmc/articles/PMC10007558/ /pubmed/36904347 http://dx.doi.org/10.3390/polym15051106 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
McReynolds, Brandon T.
Mojtabai, Kavon D.
Penners, Nicole
Kim, Gaeun
Lindholm, Samantha
Lee, Youngmin
McCoy, John D.
Chowdhury, Sanchari
Understanding the Effect of Side Reactions on the Recyclability of Furan–Maleimide Resins Based on Thermoreversible Diels–Alder Network
title Understanding the Effect of Side Reactions on the Recyclability of Furan–Maleimide Resins Based on Thermoreversible Diels–Alder Network
title_full Understanding the Effect of Side Reactions on the Recyclability of Furan–Maleimide Resins Based on Thermoreversible Diels–Alder Network
title_fullStr Understanding the Effect of Side Reactions on the Recyclability of Furan–Maleimide Resins Based on Thermoreversible Diels–Alder Network
title_full_unstemmed Understanding the Effect of Side Reactions on the Recyclability of Furan–Maleimide Resins Based on Thermoreversible Diels–Alder Network
title_short Understanding the Effect of Side Reactions on the Recyclability of Furan–Maleimide Resins Based on Thermoreversible Diels–Alder Network
title_sort understanding the effect of side reactions on the recyclability of furan–maleimide resins based on thermoreversible diels–alder network
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10007558/
https://www.ncbi.nlm.nih.gov/pubmed/36904347
http://dx.doi.org/10.3390/polym15051106
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