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A Metal Coordination-Based Supramolecular Elastomer with Shape Memory-Assisted Self-Healing Effect

Rubber materials are widely used in aerospace, automotive, smart devices and artificial skin. It is significant to address the aging susceptibility of conventional vulcanized rubber and to impart it rapid self-healing performance for destructive crack damage. Herein, a novel supramolecular rubber el...

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Autores principales: Xie, Fang, Ping, Zhongxin, Xu, Wanting, Zhang, Fenghua, Dong, Yuzhen, Li, Lianjie, Zhang, Chengsen, Gong, Xiaobo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9694331/
https://www.ncbi.nlm.nih.gov/pubmed/36433005
http://dx.doi.org/10.3390/polym14224879
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author Xie, Fang
Ping, Zhongxin
Xu, Wanting
Zhang, Fenghua
Dong, Yuzhen
Li, Lianjie
Zhang, Chengsen
Gong, Xiaobo
author_facet Xie, Fang
Ping, Zhongxin
Xu, Wanting
Zhang, Fenghua
Dong, Yuzhen
Li, Lianjie
Zhang, Chengsen
Gong, Xiaobo
author_sort Xie, Fang
collection PubMed
description Rubber materials are widely used in aerospace, automotive, smart devices and artificial skin. It is significant to address the aging susceptibility of conventional vulcanized rubber and to impart it rapid self-healing performance for destructive crack damage. Herein, a novel supramolecular rubber elastomer is prepared by introducing metal coordination between carboxyl-terminated polybutadiene and polystyrene-vinylpyridine copolymer. Based on the metal coordination interaction, the elastomer exhibits shape memory and self-healing properties. Moreover, a rapid closure-repair process of destructive cracks is achieved by presetting temporary shapes. This shape memory-assisted self-repair model is shown to be an effective means for rapid repair of severe cracks. An approach to enhance the mechanical and self-healing properties of elastomer was demonstrated by adding appropriate amounts of oxidized carbon nano-onions (O-CNO) into the system. The tensile strength of the elastomer with an O-CNOs content of 0.5 wt% was restored to 83 ± 10% of the original sample after being repaired at 85 °C for 6 h. This study confirms that metal coordination interaction is an effective method for designing shape memory self-healing rubber elastomer. The shape memory-assisted self-healing effect provides a reference for the rapid self-repairing of severe cracks.
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spelling pubmed-96943312022-11-26 A Metal Coordination-Based Supramolecular Elastomer with Shape Memory-Assisted Self-Healing Effect Xie, Fang Ping, Zhongxin Xu, Wanting Zhang, Fenghua Dong, Yuzhen Li, Lianjie Zhang, Chengsen Gong, Xiaobo Polymers (Basel) Article Rubber materials are widely used in aerospace, automotive, smart devices and artificial skin. It is significant to address the aging susceptibility of conventional vulcanized rubber and to impart it rapid self-healing performance for destructive crack damage. Herein, a novel supramolecular rubber elastomer is prepared by introducing metal coordination between carboxyl-terminated polybutadiene and polystyrene-vinylpyridine copolymer. Based on the metal coordination interaction, the elastomer exhibits shape memory and self-healing properties. Moreover, a rapid closure-repair process of destructive cracks is achieved by presetting temporary shapes. This shape memory-assisted self-repair model is shown to be an effective means for rapid repair of severe cracks. An approach to enhance the mechanical and self-healing properties of elastomer was demonstrated by adding appropriate amounts of oxidized carbon nano-onions (O-CNO) into the system. The tensile strength of the elastomer with an O-CNOs content of 0.5 wt% was restored to 83 ± 10% of the original sample after being repaired at 85 °C for 6 h. This study confirms that metal coordination interaction is an effective method for designing shape memory self-healing rubber elastomer. The shape memory-assisted self-healing effect provides a reference for the rapid self-repairing of severe cracks. MDPI 2022-11-12 /pmc/articles/PMC9694331/ /pubmed/36433005 http://dx.doi.org/10.3390/polym14224879 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
Xie, Fang
Ping, Zhongxin
Xu, Wanting
Zhang, Fenghua
Dong, Yuzhen
Li, Lianjie
Zhang, Chengsen
Gong, Xiaobo
A Metal Coordination-Based Supramolecular Elastomer with Shape Memory-Assisted Self-Healing Effect
title A Metal Coordination-Based Supramolecular Elastomer with Shape Memory-Assisted Self-Healing Effect
title_full A Metal Coordination-Based Supramolecular Elastomer with Shape Memory-Assisted Self-Healing Effect
title_fullStr A Metal Coordination-Based Supramolecular Elastomer with Shape Memory-Assisted Self-Healing Effect
title_full_unstemmed A Metal Coordination-Based Supramolecular Elastomer with Shape Memory-Assisted Self-Healing Effect
title_short A Metal Coordination-Based Supramolecular Elastomer with Shape Memory-Assisted Self-Healing Effect
title_sort metal coordination-based supramolecular elastomer with shape memory-assisted self-healing effect
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9694331/
https://www.ncbi.nlm.nih.gov/pubmed/36433005
http://dx.doi.org/10.3390/polym14224879
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