首页|Anticorrosive composite self-healing coating enabled by solar irradiation

Anticorrosive composite self-healing coating enabled by solar irradiation

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Self-healing coatings for long-term corrosion protection have received much interest in recent years.However,most self-healing coatings rely on healants released from microcapsules,dynamic bonds,shape memory,or thermoplastic materials,which generally suffer from limited healing times or harsh conditions for self-healing,such as high temperature and UV radiation.Herein,we present a composite coating with a self-healing function under easily accessible sunlight by adding Fe3O4 nanoparticles and tetradecanol into epoxy resin.Tetrade-canol,with its moderate melting point,and Fe3O4 nano-particles serve as a phase-change component and photo-thermal material in an epoxy coating system,respectively.Fe3O4 nanoparticles endow this composite self-healing coating with good photothermal properties and a rapid thermal response time under simulated solar irradiation as well as outdoor real sunlight.Tetradecanol can flow to and fill defects by phase transition at low temperatures.Therefore,artificial defects created in this type of self-healing coating can be healed by the liquified tetradecanol induced by the photothermal effect of Fe3O4 nanoparticles under simulated solar irradiation.The healed coating can still serve as a good barrier for the protection of the underlying carbon steel.These excellent properties make this self-healing coating an excellent candidate for various engineering applications.

self-healing coatingphase transitionphotothermal effectcorrosion protection

Zhentao Hao、Si Chen、Zhifeng Lin、Weihua Li

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School of Chemical Engineering and Technology,Sun Yat-sen University,Zhuhai 519082,China

Southern Marine Science and Engineering Guangdong Laboratory(Zhuhai),Sun Yat-sen University,Zhuhai 519082,China

School of Materials Science and Engineering,Sun Yat-sen University,Guangzhou 510275,China

5152590351989292519092912019A050510020

2022

化学科学与工程前沿
高等教育出版社

化学科学与工程前沿

CSTPCDCSCDSCIEI
影响因子:0.172
ISSN:2095-0179
年,卷(期):2022.16(9)
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