Self-healing corrosion protective coatings based on micro/nanocarriers: A review

Extrinsic self-healing corrosion protective coatings have attracted substantial interest because of their ability to prevent damage propagation by releasing corrosion inhibitors and polymerizable agents from micro/nanocarriers. Various micro/nanoencapsulation technologies have been adopted to optimi...

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Main Authors: Tong Liu, Lingwei Ma, Xin Wang, Jinke Wang, Hongchang Qian, Dawei Zhang, Xiaogang Li
Format: Article
Language:English
Published: Elsevier 2021-03-01
Series:Corrosion Communications
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2667266921000049
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author Tong Liu
Lingwei Ma
Xin Wang
Jinke Wang
Hongchang Qian
Dawei Zhang
Xiaogang Li
author_facet Tong Liu
Lingwei Ma
Xin Wang
Jinke Wang
Hongchang Qian
Dawei Zhang
Xiaogang Li
author_sort Tong Liu
collection DOAJ
description Extrinsic self-healing corrosion protective coatings have attracted substantial interest because of their ability to prevent damage propagation by releasing corrosion inhibitors and polymerizable agents from micro/nanocarriers. Various micro/nanoencapsulation technologies have been adopted to optimize the loading capacity and to control the releasing behavior of the healing agents for enhancing the self-healing functionality. This study aims to review recent advances in self-healing corrosion protective coatings based on micro/nanocarriers. This review also provides insights for the further development of extrinsic self-healing coatings by evaluating the advantages and limitations of different healing systems.
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spelling doaj.art-b71b31149e9b4671979a2bb1955407cd2022-12-21T21:24:22ZengElsevierCorrosion Communications2667-26692021-03-0111825Self-healing corrosion protective coatings based on micro/nanocarriers: A reviewTong Liu0Lingwei Ma1Xin Wang2Jinke Wang3Hongchang Qian4Dawei Zhang5Xiaogang Li6National Materials Corrosion and Protection Data Center, Institute for Advanced Materials and Technology, University of Science and Technology Beijing, Beijing 100083, ChinaNational Materials Corrosion and Protection Data Center, Institute for Advanced Materials and Technology, University of Science and Technology Beijing, Beijing 100083, China; BRI Southeast Asia Network for Corrosion and Protection (MOE), Shunde Graduate School of University of Science and Technology Beijing, Foshan 528399, ChinaNational Materials Corrosion and Protection Data Center, Institute for Advanced Materials and Technology, University of Science and Technology Beijing, Beijing 100083, ChinaNational Materials Corrosion and Protection Data Center, Institute for Advanced Materials and Technology, University of Science and Technology Beijing, Beijing 100083, ChinaNational Materials Corrosion and Protection Data Center, Institute for Advanced Materials and Technology, University of Science and Technology Beijing, Beijing 100083, China; BRI Southeast Asia Network for Corrosion and Protection (MOE), Shunde Graduate School of University of Science and Technology Beijing, Foshan 528399, ChinaNational Materials Corrosion and Protection Data Center, Institute for Advanced Materials and Technology, University of Science and Technology Beijing, Beijing 100083, China; BRI Southeast Asia Network for Corrosion and Protection (MOE), Shunde Graduate School of University of Science and Technology Beijing, Foshan 528399, China; Corresponding author.National Materials Corrosion and Protection Data Center, Institute for Advanced Materials and Technology, University of Science and Technology Beijing, Beijing 100083, China; BRI Southeast Asia Network for Corrosion and Protection (MOE), Shunde Graduate School of University of Science and Technology Beijing, Foshan 528399, ChinaExtrinsic self-healing corrosion protective coatings have attracted substantial interest because of their ability to prevent damage propagation by releasing corrosion inhibitors and polymerizable agents from micro/nanocarriers. Various micro/nanoencapsulation technologies have been adopted to optimize the loading capacity and to control the releasing behavior of the healing agents for enhancing the self-healing functionality. This study aims to review recent advances in self-healing corrosion protective coatings based on micro/nanocarriers. This review also provides insights for the further development of extrinsic self-healing coatings by evaluating the advantages and limitations of different healing systems.http://www.sciencedirect.com/science/article/pii/S2667266921000049Corrosion protectionOrganic coatingSelf-healing materialMicro/nanocarrier
spellingShingle Tong Liu
Lingwei Ma
Xin Wang
Jinke Wang
Hongchang Qian
Dawei Zhang
Xiaogang Li
Self-healing corrosion protective coatings based on micro/nanocarriers: A review
Corrosion Communications
Corrosion protection
Organic coating
Self-healing material
Micro/nanocarrier
title Self-healing corrosion protective coatings based on micro/nanocarriers: A review
title_full Self-healing corrosion protective coatings based on micro/nanocarriers: A review
title_fullStr Self-healing corrosion protective coatings based on micro/nanocarriers: A review
title_full_unstemmed Self-healing corrosion protective coatings based on micro/nanocarriers: A review
title_short Self-healing corrosion protective coatings based on micro/nanocarriers: A review
title_sort self healing corrosion protective coatings based on micro nanocarriers a review
topic Corrosion protection
Organic coating
Self-healing material
Micro/nanocarrier
url http://www.sciencedirect.com/science/article/pii/S2667266921000049
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AT xinwang selfhealingcorrosionprotectivecoatingsbasedonmicronanocarriersareview
AT jinkewang selfhealingcorrosionprotectivecoatingsbasedonmicronanocarriersareview
AT hongchangqian selfhealingcorrosionprotectivecoatingsbasedonmicronanocarriersareview
AT daweizhang selfhealingcorrosionprotectivecoatingsbasedonmicronanocarriersareview
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