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基于多响应性聚苯胺多孔微球的双防腐自修复涂层

Dual Anticorrosive and Self-healing Coating Based on Multiresponsive Polyaniline Porous Microspheres.

作者信息

Zhang Qingqing, Wu Kaiyun, Liu Ren, Luo Jing

机构信息

The Key Laboratory of Synthetic and Biological Colloids, Ministry of Education, School of Chemical and Material Engineering, Jiangnan University, Lihu Street 1800, Wuxi 214122, China.

出版信息

Langmuir. 2024 Oct 8;40(40):20906-20917. doi: 10.1021/acs.langmuir.4c01703. Epub 2024 Sep 25.

Abstract

In this work, a smart self-healing coating with long-term anticorrosion ability was developed based on multiresponsive polyaniline (PANI) porous microspheres. The polyaniline porous microspheres loaded with corrosion inhibitor (benzotriazole, BTA) was prepared by the emulsion template method and photopolymerization. The BTA loaded in the polyaniline microspheres acted as a corrosion inhibitor, while the polyaniline in the shell performed the multiple functions of corrosion inhibition, pH-responsive and photoresponsive release, and photothermal conversion. Owing to the inherent corrosion-inhibiting nature of BTA and PANI, the BTA-loaded polyaniline microsphere could endow coating with dual anticorrosive properties. The coating with polyaniline microspheres did not show any corrosion product after 700 h of salt spray testing, while obvious pitting corrosion could be observed for the blank coating after 100 h of the salt spray test. Thanks to the photothermal properties of PANI, the composite coating exhibited self-healing behavior under NIR light irradiation. The coating with 10 wt % polyaniline microspheres could achieve rapid closure and recover its barrier properties within 5 s of NIR irradiation. And the release of BTA could form a passivation film on scratches to further repair coating defects. The on-command responsive release, high healing efficiency, and excellent anticorrosion properties of this dual self-healing anticorrosion coating provide perspectives on extending the service life of metals.

摘要

在这项工作中,基于多响应性聚苯胺(PANI)多孔微球开发了一种具有长期防腐能力的智能自修复涂层。通过乳液模板法和光聚合制备了负载缓蚀剂(苯并三唑,BTA)的聚苯胺多孔微球。负载在聚苯胺微球中的BTA作为缓蚀剂,而壳层中的聚苯胺则具有缓蚀、pH响应和光响应释放以及光热转换等多种功能。由于BTA和PANI固有的缓蚀特性,负载BTA的聚苯胺微球可赋予涂层双重防腐性能。含有聚苯胺微球的涂层在盐雾试验700小时后未出现任何腐蚀产物,而空白涂层在盐雾试验100小时后可观察到明显的点蚀。得益于PANI的光热特性,复合涂层在近红外光照射下表现出自修复行为。含有10 wt%聚苯胺微球的涂层在近红外照射5秒内即可实现快速闭合并恢复其阻隔性能。并且BTA的释放可在划痕上形成钝化膜,进一步修复涂层缺陷。这种双重自修复防腐涂层的按需响应释放、高修复效率和优异的防腐性能为延长金属使用寿命提供了前景。

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