单宁酸
材料科学
环氧树脂
腐蚀
极限抗拉强度
涂层
复合材料
复合数
吸水率
接触角
盐雾试验
介电谱
金属
化学工程
丙烯酸酯
韧性
拉伸试验
超疏水涂料
电化学
延伸率
天然纤维
环境友好型
动态力学分析
粘附
填料(材料)
作者
Xuan Liu,Rui Yang,Xiaofeng Han,Hao Xing,Ming Li,Chao Wang,Mingxi Wang,Dandan Wang,Yuan Li,Yang Dai,Xiaojuan Lai
标识
DOI:10.1002/marc.202500636
摘要
Waterborne epoxy resin (WEP) has gained attention for its low volatile organic compound (VOC) emissions, making it a key focus in eco-friendly coatings. However, its corrosion resistance still lags behind that of traditional solvent-based coatings. Tannic acid (TA), a natural polyphenolic compound, shows strong metal chelating ability and potential for corrosion protection. Yet, its high hydrophilicity limits its use in coatings. Herein, fluorinated tannic acid (FxTA) with different degrees of fluorination was synthesized by grafting polyhexafluorobutyl acrylate (PHFBA) onto tannic acid and was introduced into the WEP matrix as a functional filler to enhance its anti-corrosion performance. Electrochemical tests demonstrated that the F3TA filler in the FxTA/WEP composite coatings exhibited the most superior performance. When the filling amount of F3TA was 4.9 mL, the contact angle of the 4.9-F3TA/WEP composite coating increased to 86.42°, and the water absorption rate decreased by approximately 52.37%. Moreover, this composite coating maintained a basic constancy in hardness and adhesion while having a tensile strength of 2.51 MPa and an elongation at break of 77.80%, demonstrating excellent mechanical properties. The electrochemical impedance modulus of the 4.9-F3TA/WEP coating is 2.13 × 108 Ω·cm2, and it maintains a high value of 2.07 × 107 Ω·cm2 even after 20 days of salt spray exposure, demonstrating its excellent corrosion resistance. This study offers novel insights into the functional modification of natural polyphenolic compounds and introduces an environmentally friendly coating system capable of providing excellent long-term corrosion protection.
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