Development of a curcumin-based antifouling and anticorrosion sustainable polybenzoxazine resin composite coating

热重分析 材料科学 生物污染 化学工程 涂层 介电谱 单体 傅里叶变换红外光谱 聚合物 X射线光电子能谱 高分子化学 复合材料 化学 电化学 生物化学 工程类 物理化学 电极
作者
Yajun Deng,Lixue Xia,Guang‐Ling Song,Yan Zhao,Yanmei Zhang,Yuqing Xu,Dajiang Zheng
出处
期刊:Composites Part B-engineering [Elsevier BV]
卷期号:225: 109263-109263 被引量:85
标识
DOI:10.1016/j.compositesb.2021.109263
摘要

Polybenzoxazine is an outstanding and highly promising resin for many advanced applications. This paper reports on a series of sustainable high-performance coatings made of benzoxazine monomer synthesized via the Mannich reaction of curcumin, 3-aminopropyltriethoxysilane and paraformaldehyde. This curcumin-based polybenzoxazine resin was experimentally demonstrated for the first time to be an effective barrier layer, which could evidently reduce the corrosion rate of the substrate metal, and significantly resist the fouling attachment. In addition, it was found that an increased content of PEG in the resin could further improve the antifouling performance of the coating. Molecular dynamics (MD) simulations suggested that a carefully selected density of PEG molecules in the polybenzoxazine framework could critically affect the hydration layer and the interaction energy. The benzoxazine monomer and polymer were characterized by Fourier transform infrared (FT-IR), X-ray photoelectron spectroscopy (XPS), proton nuclear magnetic resonance ( 1 H NMR and 13 C NMR) spectroscopy, different scanning calorimetry (DSC), and thermogravimetric technique. The anticorrosion and antifouling of the developed polybenzoxazine resins were evaluated by potentiodynamic polarization, electrochemical impedance spectroscopy (EIS) and attachment of protein, bacteria and microalgae. The results showed that the polybenzoxazine coatings (PCB or PCBG-X) performed excellently in anticorrosion even after long-term exposure in corrosive environments, and some of the polybenzoxazine coatings, like PCBG-10 and PCBG-15, possessed a superior antifouling capacity. To simultaneously enhance the anticorrosion and antifouling, a double layer coating system was designed using the PCB resin as the sub-layer and the PCBG-10 or PCBG-15 film as the up-layer. The great long-term corrosion resistance of the coatings was confirmed by electrochemical measurements in salt immersion and salt-spray. It is expected that this new design of the promising polybenzoxazine resin coating system will find wide applications in marine industry and relevant fields. Development of a Curcumin-based Antifouling and Anticorrosion Sustainable Polybenzoxazine Resin Composite Coating. • Curcumin, as a natural and renewable phenol, was used as the main material to prepare polybenzoxazine resin. • The polybenzoxazine resin had the outstanding anticorrosion property for 2616 h. • The addition of a certain content of PEG into the resin resulted in an excellent repellent property. • The beneficial antifouling effect of the PEG/resin composites was evaluated experimentally and MD-simulated. • A dual-function coating was developed with anticorrosion resin as the sub-layer and antifouling resin as the up-layer.
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