Li Qiang, He Peng, Wang Haihua, Xu Ziqi, Zhan Xiaoli, Liu Quan, Zhang Qinghua
College of Chemical and Biological Engineering, Zhejiang University, Zhejiang Provincial Key Laboratory of Advanced Chemical Engineering Manufacture Technology, Hangzhou, 310027, China.
Institute of Zhejiang University-Quzhou, Zhejiang Provincial Innovation Center of Advanced Chemicals Technology, Quzhou, 324000, China.
Chemistry. 2024 Apr 11;30(21):e202303096. doi: 10.1002/chem.202303096. Epub 2024 Mar 4.
Poly(dimethylsiloxane) (PDMS) is widely used in marine antifouling coatings due to its low surface energy property. However, certain drawbacks of PDMS coatings such as poor surface adhesion, weak mechanical properties, and inadequate static antifouling performance have hindered its practical applications. Herein, condensation polymerization is utilized to prepare PDMS-based polythiamine ester (PTUBAF) coatings that consist of PDMS, polytetrahydrofuran (PTMG), 2, 3, 5, 6-tetrafluoro-1, 4-benzenedimethanol (TBD) as the main chains and isobornyl acrylate(IBA) as the antifouling group. The surface adhesion to the substrate is enhanced due to the hydrogen bond between the coated carbamate group and the hydroxyl group on the surface of the substrate. Mechanical properties of PTUBAF are significantly improved due to the benzene ring and six-membered ring biphase hard structure. The strong synergistic effect of bactericidal groups and low surface energy surface endows the PTUBAF coating with outstanding antifouling performance. Due to the low surface energy surface, the PTUBAF coatings are also found to possess excellent anti-corrosion. Furthermore, since the PTUBAF coatings exhibit a visible light transmittance of 91 %, they can applied as protective films for smartphones. The proposed method has the potential to boost the production and practical applications of silicone-based coatings.
聚二甲基硅氧烷(PDMS)因其低表面能特性而被广泛应用于海洋防污涂料中。然而,PDMS涂层存在一些缺点,如表面附着力差、机械性能弱和静态防污性能不足等,这阻碍了其实际应用。在此,利用缩聚反应制备了基于PDMS的聚硫代氨基甲酸酯(PTUBAF)涂层,该涂层由PDMS、聚四氢呋喃(PTMG)、2,3,5,6-四氟-1,4-苯二甲醇(TBD)作为主链以及丙烯酸异冰片酯(IBA)作为防污基团组成。由于涂层中的氨基甲酸酯基团与基材表面的羟基之间形成氢键,从而增强了对基材的表面附着力。由于苯环和六元环双相硬质结构,PTUBAF的机械性能得到显著改善。杀菌基团与低表面能表面的强协同效应赋予PTUBAF涂层出色的防污性能。由于表面具有低表面能,PTUBAF涂层还具有优异的防腐性能。此外,由于PTUBAF涂层的可见光透过率为91%,它们可作为智能手机的保护膜。所提出的方法有可能促进有机硅基涂料的生产和实际应用。