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Self-Healing, Solvent-Free, Anti-Corrosion Coating Based on Skin-like Polyurethane/Carbon Nanotubes Composites with Real-Time Damage Monitoring

Self-healing anti-corrosion materials are widely regarded as a promising long-term corrosion protection strategy, and this is even more significant if the damage can be monitored in real-time and consequently repaired. Inspired by the hierarchical structure of human skin, self-healing, solvent-free...

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Autores principales: Kong, Hui, Luo, Xiaomin, Zhang, Peng, Feng, Jianyan, Li, Pengni, Hu, Wenjie, Wang, Xuechuan, Liu, Xinhua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9823577/
https://www.ncbi.nlm.nih.gov/pubmed/36616033
http://dx.doi.org/10.3390/nano13010124
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author Kong, Hui
Luo, Xiaomin
Zhang, Peng
Feng, Jianyan
Li, Pengni
Hu, Wenjie
Wang, Xuechuan
Liu, Xinhua
author_facet Kong, Hui
Luo, Xiaomin
Zhang, Peng
Feng, Jianyan
Li, Pengni
Hu, Wenjie
Wang, Xuechuan
Liu, Xinhua
author_sort Kong, Hui
collection PubMed
description Self-healing anti-corrosion materials are widely regarded as a promising long-term corrosion protection strategy, and this is even more significant if the damage can be monitored in real-time and consequently repaired. Inspired by the hierarchical structure of human skin, self-healing, solvent-free polyurethane/carbon nanotubes composites (SFPUHE-HTF-CNTs) with a skin-like bilayer structure were constructed. The SFPUHE-HTF-CNTs were composed of two layers, namely, a hydrophobic solvent-free polyurethane (SFPUHE-HTF) containing disulfide bonds and fluorinated polysiloxane chain segments consisting of a self-healing layer and CNTs with good electrical conductivity consisting of a corrosion protection layer, which also allowed for the real-time monitoring of damage. The results of corrosion protection experiments indicated that the SFPUHE-HTF-CNTs had a low corrosion current density (8.94 × 10(−9) A·cm(−2)), a positive corrosion potential (−0.38 V), and a high impedance modulus (|Z| = 4.79 × 10(5) Ω·cm(2)). The impedance modulus could still reach 4.54 × 10(4) Ω·cm(2) after self-healing, showing excellent self-healing properties for anti-corrosion protection. Synchronously, the SFPUHE-HTF-CNTs exhibited a satisfactory damage sensing performance, enabling the real-time monitoring of fractures at different sizes. This work realized the effective combination of self-healing with corrosion protection and damage detection functions through a bionic design, and revealed the green, and low-cost preparation of advanced composites, which have the advantage of scale production.
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spelling pubmed-98235772023-01-08 Self-Healing, Solvent-Free, Anti-Corrosion Coating Based on Skin-like Polyurethane/Carbon Nanotubes Composites with Real-Time Damage Monitoring Kong, Hui Luo, Xiaomin Zhang, Peng Feng, Jianyan Li, Pengni Hu, Wenjie Wang, Xuechuan Liu, Xinhua Nanomaterials (Basel) Article Self-healing anti-corrosion materials are widely regarded as a promising long-term corrosion protection strategy, and this is even more significant if the damage can be monitored in real-time and consequently repaired. Inspired by the hierarchical structure of human skin, self-healing, solvent-free polyurethane/carbon nanotubes composites (SFPUHE-HTF-CNTs) with a skin-like bilayer structure were constructed. The SFPUHE-HTF-CNTs were composed of two layers, namely, a hydrophobic solvent-free polyurethane (SFPUHE-HTF) containing disulfide bonds and fluorinated polysiloxane chain segments consisting of a self-healing layer and CNTs with good electrical conductivity consisting of a corrosion protection layer, which also allowed for the real-time monitoring of damage. The results of corrosion protection experiments indicated that the SFPUHE-HTF-CNTs had a low corrosion current density (8.94 × 10(−9) A·cm(−2)), a positive corrosion potential (−0.38 V), and a high impedance modulus (|Z| = 4.79 × 10(5) Ω·cm(2)). The impedance modulus could still reach 4.54 × 10(4) Ω·cm(2) after self-healing, showing excellent self-healing properties for anti-corrosion protection. Synchronously, the SFPUHE-HTF-CNTs exhibited a satisfactory damage sensing performance, enabling the real-time monitoring of fractures at different sizes. This work realized the effective combination of self-healing with corrosion protection and damage detection functions through a bionic design, and revealed the green, and low-cost preparation of advanced composites, which have the advantage of scale production. MDPI 2022-12-26 /pmc/articles/PMC9823577/ /pubmed/36616033 http://dx.doi.org/10.3390/nano13010124 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
Kong, Hui
Luo, Xiaomin
Zhang, Peng
Feng, Jianyan
Li, Pengni
Hu, Wenjie
Wang, Xuechuan
Liu, Xinhua
Self-Healing, Solvent-Free, Anti-Corrosion Coating Based on Skin-like Polyurethane/Carbon Nanotubes Composites with Real-Time Damage Monitoring
title Self-Healing, Solvent-Free, Anti-Corrosion Coating Based on Skin-like Polyurethane/Carbon Nanotubes Composites with Real-Time Damage Monitoring
title_full Self-Healing, Solvent-Free, Anti-Corrosion Coating Based on Skin-like Polyurethane/Carbon Nanotubes Composites with Real-Time Damage Monitoring
title_fullStr Self-Healing, Solvent-Free, Anti-Corrosion Coating Based on Skin-like Polyurethane/Carbon Nanotubes Composites with Real-Time Damage Monitoring
title_full_unstemmed Self-Healing, Solvent-Free, Anti-Corrosion Coating Based on Skin-like Polyurethane/Carbon Nanotubes Composites with Real-Time Damage Monitoring
title_short Self-Healing, Solvent-Free, Anti-Corrosion Coating Based on Skin-like Polyurethane/Carbon Nanotubes Composites with Real-Time Damage Monitoring
title_sort self-healing, solvent-free, anti-corrosion coating based on skin-like polyurethane/carbon nanotubes composites with real-time damage monitoring
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9823577/
https://www.ncbi.nlm.nih.gov/pubmed/36616033
http://dx.doi.org/10.3390/nano13010124
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