Tannic acid‐copper metal‐organic frameworks decorated graphene oxide for reinforcement of the corrosion protection of waterborne epoxy coatings

Li Cheng, Peimin Hou, Chengbao Liu
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引用次数: 2

Abstract

Waterborne anticorrosion coatings have aroused tremendous attention in the metal protection field due to their environmentally friendly properties. However, the limited barrier performance and poor resistance to corrosive species severely impede its practical applications. Herein, tannic acid‐copper metal‐organic framework (TA‐Cu) was first synthesized via oxidative coordination and then assembled with graphene oxide to obtain TA‐Cu‐decorated graphene oxide (TAG), which was utilized to improve the anticorrosion performance of waterborne epoxy (WEP) coatings. Electrochemical measurements demonstrated that the impermeability of WEP has been significantly enhanced with the incorporation of TAG. Meanwhile, local electrochemical impedance spectroscopy tests indicated that the corrosion reaction at defected region can be effectively suppressed, presenting an active anticorrosion function. The protection mechanisms are attributed to (1) TA‐Cu contributed to the dispersion of graphene oxide in WEP and impeded the intrusion of aggressive ions and (2) the coordination and adsorption of TA on steel inhibited the redox process and corrosion extension.
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单宁酸-铜金属-有机框架装饰氧化石墨烯,用于增强水性环氧涂料的防腐性能
水性防腐涂料以其环保性在金属防护领域引起了广泛的关注。但其阻隔性能有限,耐腐蚀性较差,严重阻碍了其实际应用。本文首先通过氧化配位合成了单宁酸-铜金属-有机骨架(TA‐Cu),然后与氧化石墨烯组装得到TA‐Cu修饰的氧化石墨烯(TAG),用于提高水性环氧树脂(WEP)涂层的防腐性能。电化学测试表明,加入TAG后,WEP的抗渗性能显著提高。同时,局部电化学阻抗谱测试表明,缺陷区域的腐蚀反应能够得到有效抑制,呈现出积极的防腐功能。这种保护机制可归因于:(1)TA‐Cu有助于氧化石墨烯在WEP中的分散,并阻碍了侵蚀离子的侵入;(2)TA在钢上的配位和吸附抑制了氧化还原过程和腐蚀扩展。
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