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Self-Healable Supramolecular Vanadium Pentoxide Reinforced Polydimethylsiloxane-Graft-Polyurethane Composites
The self-healing ability can be imparted to the polymers by different mechanisms. In this study, self-healing polydimethylsiloxane-graft-polyurethane (PDMS-g-PUR)/Vanadium pentoxide (V(2)O(5)) nanofiber supramolecular polymer composites based on a reversible hydrogen bonding mechanism are prepared....
Autores principales: | , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2018
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6401741/ https://www.ncbi.nlm.nih.gov/pubmed/30960025 http://dx.doi.org/10.3390/polym11010041 |
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author | Berkem, Ali Sabri Capoglu, Ahmet Nugay, Turgut Sancaktar, Erol Anac, Ilke |
author_facet | Berkem, Ali Sabri Capoglu, Ahmet Nugay, Turgut Sancaktar, Erol Anac, Ilke |
author_sort | Berkem, Ali Sabri |
collection | PubMed |
description | The self-healing ability can be imparted to the polymers by different mechanisms. In this study, self-healing polydimethylsiloxane-graft-polyurethane (PDMS-g-PUR)/Vanadium pentoxide (V(2)O(5)) nanofiber supramolecular polymer composites based on a reversible hydrogen bonding mechanism are prepared. V(2)O(5) nanofibers are synthesized via colloidal route and characterized by XRD, SEM, EDX, and TEM techniques. In order to prepare PDMS-g-PUR, linear aliphatic PUR having one –COOH functional group (PUR-COOH) is synthesized and grafted onto aminopropyl functionalized PDMS by EDC/HCl coupling reaction. PUR-COOH and PDMS-g-PUR are characterized by (1)H NMR, FTIR. PDMS-g-PUR/V(2)O(5) nanofiber composites are prepared and characterized by DSC/TGA, FTIR, and tensile tests. The self-healing ability of PDMS-graft-PUR and composites are determined by mechanical tests and optical microscope. Tensile strength data obtained from mechanical tests show that healing efficiencies of PDMS-g-PUR increase with healing time and reach 85.4 ± 1.2 % after waiting 120 min at 50 °C. The addition of V(2)O(5) nanofibers enhances the mechanical properties and healing efficiency of the PDMS-g-PUR. An increase of healing efficiency and max tensile strength from 85.4 ± 1.2% to 95.3 ± 0.4% and 113.08 ± 5.24 kPa to 1443.40 ± 8.96 kPa is observed after the addition of 10 wt % V(2)O(5) nanofiber into the polymer. |
format | Online Article Text |
id | pubmed-6401741 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2018 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-64017412019-04-02 Self-Healable Supramolecular Vanadium Pentoxide Reinforced Polydimethylsiloxane-Graft-Polyurethane Composites Berkem, Ali Sabri Capoglu, Ahmet Nugay, Turgut Sancaktar, Erol Anac, Ilke Polymers (Basel) Article The self-healing ability can be imparted to the polymers by different mechanisms. In this study, self-healing polydimethylsiloxane-graft-polyurethane (PDMS-g-PUR)/Vanadium pentoxide (V(2)O(5)) nanofiber supramolecular polymer composites based on a reversible hydrogen bonding mechanism are prepared. V(2)O(5) nanofibers are synthesized via colloidal route and characterized by XRD, SEM, EDX, and TEM techniques. In order to prepare PDMS-g-PUR, linear aliphatic PUR having one –COOH functional group (PUR-COOH) is synthesized and grafted onto aminopropyl functionalized PDMS by EDC/HCl coupling reaction. PUR-COOH and PDMS-g-PUR are characterized by (1)H NMR, FTIR. PDMS-g-PUR/V(2)O(5) nanofiber composites are prepared and characterized by DSC/TGA, FTIR, and tensile tests. The self-healing ability of PDMS-graft-PUR and composites are determined by mechanical tests and optical microscope. Tensile strength data obtained from mechanical tests show that healing efficiencies of PDMS-g-PUR increase with healing time and reach 85.4 ± 1.2 % after waiting 120 min at 50 °C. The addition of V(2)O(5) nanofibers enhances the mechanical properties and healing efficiency of the PDMS-g-PUR. An increase of healing efficiency and max tensile strength from 85.4 ± 1.2% to 95.3 ± 0.4% and 113.08 ± 5.24 kPa to 1443.40 ± 8.96 kPa is observed after the addition of 10 wt % V(2)O(5) nanofiber into the polymer. MDPI 2018-12-29 /pmc/articles/PMC6401741/ /pubmed/30960025 http://dx.doi.org/10.3390/polym11010041 Text en © 2018 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/). |
spellingShingle | Article Berkem, Ali Sabri Capoglu, Ahmet Nugay, Turgut Sancaktar, Erol Anac, Ilke Self-Healable Supramolecular Vanadium Pentoxide Reinforced Polydimethylsiloxane-Graft-Polyurethane Composites |
title | Self-Healable Supramolecular Vanadium Pentoxide Reinforced Polydimethylsiloxane-Graft-Polyurethane Composites |
title_full | Self-Healable Supramolecular Vanadium Pentoxide Reinforced Polydimethylsiloxane-Graft-Polyurethane Composites |
title_fullStr | Self-Healable Supramolecular Vanadium Pentoxide Reinforced Polydimethylsiloxane-Graft-Polyurethane Composites |
title_full_unstemmed | Self-Healable Supramolecular Vanadium Pentoxide Reinforced Polydimethylsiloxane-Graft-Polyurethane Composites |
title_short | Self-Healable Supramolecular Vanadium Pentoxide Reinforced Polydimethylsiloxane-Graft-Polyurethane Composites |
title_sort | self-healable supramolecular vanadium pentoxide reinforced polydimethylsiloxane-graft-polyurethane composites |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6401741/ https://www.ncbi.nlm.nih.gov/pubmed/30960025 http://dx.doi.org/10.3390/polym11010041 |
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