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An adaptive waterborne fluorocarbon coatings with Anti-Flashing Rust, Antibiofouling, and Self-Repairing properties

CHEMICAL ENGINEERING JOURNAL [2024]
Kai Han, Jian Liu, Fukang Hao, Jianlong Wang, Jinfeng Yuan, Zhicheng Pan, Mingwang Pan
ABSTRACT

Waterborne fluorocarbon coatings are gaining popularity as a more environmentally friendly replacement for traditional solvent-based coatings because of its corrosion resistance and antibiofouling properties. However, the environmental unfriendliness of small molecular emulsifiers used, the occurrence of flash rusting, and the inability to self-repair after accidental damage restrict its application in the marine industry. Here, a redox-responsive copolymer (PM x ) was synthesized by the amphiphilic nature of waterborne polyurethane as microreactors, which was employed as coatings (PM x /WPU) with anti-flashing rust, antibiofouling, and self-repairing functions. The copolymer was polymerized from chlorotrifluoroethylene (CTFE), vinyl acetate (VA), and a special monomer conjugated to the corrosion inhibitor 2-benzothiazolethiol (MBT) through disulfide bonds, in which MBT can be released through disulfide bond breaking in a reducing environment, effectively preventing the occurrence of flash rusting. The combination of the repelling properties of the fluorinated groups and the bactericidal action of the MBT results in PM x /WPU coatings with excellent antibiofouling properties. Additionally, the reversible hydrogen bonds in the polyurethane provide the PM x /WPU coatings with excellent self-repairing ability (93.9%). Our study presents a new approach to polymerize fluoro-substituted ethylene monomers using polyurethane as microreactors, enabling the preparation of waterborne fluorocarbon coatings with anti-flashing rust, antibiofouling, and self-repairing properties for practical applications.

MATERIALS

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