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具有主动/被动腐蚀防护功能的环保型可持续响应高性能苯并三唑-金属有机框架/二氧化硅复合涂层在铜上的应用

Eco-Friendly Sustainable and Responsive High-Performance Benzotriazole-Metal Organic Frameworks/Silica Composite Coating with Active/Passive Corrosion Protection on Copper.

作者信息

Gao Xu, Gao Yan, Cao Huaijie, Zhang Junxi

机构信息

Shanghai Key Laboratory of Material Protection and Advanced Material in Electric Power, Shanghai University of Electric Power, Shanghai 200090, China.

出版信息

Langmuir. 2024 Apr 9;40(14):7639-7652. doi: 10.1021/acs.langmuir.4c00328. Epub 2024 Mar 29.

Abstract

Coatings with only passive protection cannot offer long-term anticorrosion on metals. Eco-friendly sustainable and responsive coating for active/passive corrosion protection is desirable to extend the service life of metals. Here, benzotriazole (BTA)-metal organic frameworks (Cu-MOFs, UiO-66) were embedded in silica (SiO) coating by one-step electrodeposition on copper. Combined with passive capability of MOFs and active protection of BTA inhibitor, the composite coating (BTA-MOF/SiO) exhibited high and stable corrosion resistance, confirmed by microstructure characterizations and electrochemical tests. As a result, the as-prepared composite coating exhibited superhydrophobicity with a water contact angle of 154.2°. With loading of BTA-MOF in SiO coating, the impedance modulus at 0.01 Hz increased by ∼10-fold and the corrosion current density decreased to 3.472 × 10 A·cm. Immersion and salt spray tests confirmed the long-term protection of the composite coating. The responsive release of BTA inhibitor endows the coating with a responsively anticorrosive behavior. The active-passive ability makes the coating a good candidate for protection on metals used in highly salty environments.

摘要

仅具有被动防护功能的涂层无法为金属提供长期防腐保护。为延长金属使用寿命,研发具有环保、可持续且响应特性的用于主动/被动腐蚀防护的涂层很有必要。在此,通过在铜上一步电沉积法将苯并三唑(BTA)-金属有机框架(Cu-MOFs,UiO-66)嵌入二氧化硅(SiO)涂层中。结合金属有机框架的被动防护能力和BTA缓蚀剂的主动保护作用,微观结构表征和电化学测试证实复合涂层(BTA-MOF/SiO)具有高且稳定的耐腐蚀性。结果,所制备的复合涂层呈现超疏水性,水接触角为154.2°。随着BTA-MOF负载于SiO涂层中,0.01 Hz下的阻抗模量增加了约10倍,腐蚀电流密度降至3.472×10 A·cm。浸泡和盐雾试验证实了复合涂层的长期保护效果。BTA缓蚀剂的响应释放赋予涂层响应性防腐行为。主动-被动防护能力使该涂层成为高盐环境中金属防护的良好候选材料。

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