4.8 Article

Bioinspired Durable Antibacterial and Antifouling Coatings Based on Borneol Fluorinated Polymers: Demonstrating Direct Evidence of Antiadhesion

期刊

ACS APPLIED MATERIALS & INTERFACES
卷 13, 期 28, 页码 33417-33426

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsami.1c06030

关键词

antibacterial; antifouling; biologically inspired; natural isobornyl; fluorine

资金

  1. National Key Research and Development Project [2019YFC0312102]
  2. Defense Industrial Technology Development Program [JCKY2019604C001]
  3. NSFC-Nuclear Technology Innovation Joint Fund [U1967214]
  4. Postdoctoral Science Foundation of China [2019M663416]
  5. Fundamental Research Funds of the Central University
  6. Heilongjiang Touyan Innovation Team Program

向作者/读者索取更多资源

A polymer coating made from natural substances with excellent antibacterial and antifouling properties was reported. The coating incorporating fluorine elements and borneol demonstrated exceptional environmental friendliness and long-term stability.
Substituting natural products for traditional poison-killing antifouling agents is an efficient and promising method to alleviate the increasingly serious ecological crisis and aggravate the loss due to marine biofouling. Herein, the successful synthesis of poly(methyl methacrylate-co-ethyl acrylate-co-hexafluorobutyl methacrylate-co-isobornyl methacrylate) copolymer (PBAF) with borneol monomers and fluorine by a free radical polymerization method is reported. The PBA(0.09)F coating exhibits outstanding antibacterial and antifouling activity, achieving 98.2% and 92.3% resistance to Escherichia coli and Staphylococcus aureus, respectively, and the number of Halamphora sp. adhesion is only 26 (0.1645 mm(2)) in 24 h. This remarkable antibacterial and antifouling performance is attributed to the incorporation of fluorine components into the copolymer, which induces a low surface energy and hydrophobicity and the complex molecular structure of the natural nontoxic antifouling agent borneol. In addition, the results showed that the contents of the adhesion-related proteins mfp-3, mfp-5, and mfp-6 were significantly reduced, which proved that natural substances affect the secretion of biological proteins. Importantly, the PBAF coating exhibits excellent environmental friendliness and long-term stability. The antifouling mechanism is clarified, and an effective guide for an environmentally friendly antifouling coating design is proposed.

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