4.7 Article

Fast Self-Healing and Self-Cleaning Anticorrosion Coating Based on Dynamic Reversible Imine and Multiple Hydrogen Bonds

Journal

ACS APPLIED POLYMER MATERIALS
Volume -, Issue -, Pages -

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acsapm.2c00294

Keywords

poly(dimethylsiloxane); copolymer; anticorrosion; self-healing; self-cleaning

Funding

  1. National Natural Science Foundation of China [52150410401, U1601215]
  2. China Postdoctoral Science Foundation [2019M652822]
  3. Youth Innovation Promotion Association of the Chinese Academy of Sciences [2019354]
  4. Shenzhen Sci ence and Technology Research Fund [JCYJ20200109114401708]

Ask authors/readers for more resources

In this study, a multifunctional coating material with excellent anticorrosion performance, fast self-healing, and self-cleaning properties is reported. The PDMS-TA-PUa coating, which is modified with a double reversible dynamic bond crosslinking network structure, can repair cracks within 40-50 minutes at room temperature.
Anticorrosive coatings are extensively investigated as a potential solution to prevent or at least retard metal corrosion occurrence. However, the actual breakthrough is still hampered by the risk of barrier properties loss because of the local failure of the coating. Self-healing coatings can effectively repair microcracks, but outstanding self-healing behavior is always accompanied by poor self-cleaning ability. Herein, we report a series of poly(dimethylsiloxane) (PDMS) modified with a terephthalic aldehyde (TA)-polyurea (PDMS-TA-PUa) copolymer with a double reversible dynamic bond crosslinking network structure. The PDMS-TA-PUa coating exhibits fast and re-recycled self-healing behavior that heals cracks within 40-50 min at room temperature. The fast self-healing property is attributed to the dynamic nature of the imine bonds and hydrogen bonds in polymer networks. The PDMS-TA-PUa coating also shows great self-cleaning and anticorrosive ability, due to high hydrophobic, low surface energy, and high corrosion potential. Our work gives an insight into the design and preparation of multifunctional coating material with excellent anticorrosion performance, fast self-healing, and self-cleaning properties.

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