Department of Biochemical Engineering, Tianjin University, Tianjin 300350, P. R. China.
School of Chemical Engineering and Technology, Frontier Science Center for Synthetic Biology and Key Laboratory of Systems Bioengineering (MOE), Tianjin University, Tianjin 300350, P. R. China.
Langmuir. 2020 Dec 8;36(48):14573-14581. doi: 10.1021/acs.langmuir.0c02329. Epub 2020 Nov 18.
The development of environmentally friendly and highly efficient antifouling coatings is vastly desirable in the marine industry. Herein, we prepared a novel amphiphilic block copolymer that combined hydrophilic polyvinylpyrrolidone (PVP) with hydrophobic poly(1-(1,1,2,2-perfluorodecyloxy)-3-(3,6,9-trioxadecyloxy)-propan-2-yl acrylate) (PFA) and polydimethylsiloxane (PDMS). The amphiphilic copolymer (PVP-PFA-PDMS) was blended into a cross-linked PDMS matrix to form a set of controlled surface composition and surface-renewal coatings with efficient antifouling and fouling-release properties. These coatings incorporated the biofouling settlement resistance ability attributed to the hydrophilic PVP segments and the reduced adhesion strength attributed to the low surface energy of fluorine-silicon-containing segments. As expected, the coatings showed an excellent antifouling performance against bacteria and marine unicellular diatoms (98.1 and 98.5% of reduction, respectively) and fouling-release performance against pseudobarnacle adhesion (84.3% of reduction) compared to the pristine PDMS coating. Moreover, a higher-content PVP-based coatings presented higher ability to resist biofouling adhesion. The nontoxic antifouling coating developed in this paper hold the potential to be applied in a variety of marine industrial facilities.
在海洋产业中,开发环保且高效的防污涂料是非常理想的。在此,我们制备了一种新型两亲性嵌段共聚物,它将亲水性聚乙烯吡咯烷酮(PVP)与疏水性聚 1-(1,1,2,2-全氟癸氧基)-3-(3,6,9-三氧代癸氧基)-丙-2-基丙烯酰胺(PFA)和聚二甲基硅氧烷(PDMS)结合在一起。两亲性共聚物(PVP-PFA-PDMS)被掺入交联 PDMS 基质中,形成了一组具有高效防污和自清洁性能的可控表面组成和表面更新的涂层。这些涂层具有抗生物污垢附着的能力,这归因于亲水的 PVP 段,以及由于含氟硅段的低表面能而降低的附着强度。不出所料,与原始 PDMS 涂层相比,这些涂层对细菌和海洋单细胞硅藻(分别减少 98.1%和 98.5%)表现出优异的防污性能,对藤壶附着(减少 84.3%)表现出出色的自清洁性能。此外,含有更高含量 PVP 的涂层具有更高的抗生物污垢附着能力。本文开发的无毒防污涂层有望应用于各种海洋工业设施。