Department of Coatings and Polymeric Materials, North Dakota State University , Fargo North Dakota 58108, United States.
Center for Nanoscale Science and Engineering, North Dakota State University , Fargo, North Dakota 58108, United States.
ACS Appl Mater Interfaces. 2016 Oct 26;8(42):29025-29036. doi: 10.1021/acsami.6b09484. Epub 2016 Oct 11.
The effect of incorporation of silicone oils into a siloxane-polyurethane fouling-release coatings system was explored. Incorporation of phenylmethyl silicone oil has been shown to improve the fouling-release performance of silicone-based fouling-release coatings through increased interfacial slippage. The extent of improvement is highly dependent upon the type and composition of silicone oil used. The siloxane-polyurethane (SiPU) coating system is a tough fouling-release solution, which combines the mechanical durability of polyurethane while maintaining comparable fouling-release performance with regard to commercial standards. To further improve the fouling-release performance of the siloxane-PU coating system, the use of phenylmethyl silicones oils was studied. Coatings formulations were prepared incorporating phenylmethyl silicone oils having a range of compositions and viscosities. Contact angle and surface energy measurements were conducted to evaluate the surface wettability of the coatings. X-ray photoelectron spectroscopy (XPS) depth profiling experiments demonstrated self-stratification of silicone oil along with siloxane to the coating-air interface. Several coating formulations displayed improved or comparable fouling-release performance to commercial standards during laboratory biological assay tests for microalgae (Navicula incerta), macroalgae (Ulva linza), adult barnacles (Balanus amphitrite syn. Amphibalanus amphitrite), and mussels (Geukensia demissa). Selected silicone-oil-modified siloxane-PU coatings also demonstrated comparable fouling-release performance in field immersion trials. In general, modifying the siloxane-PU fouling-release coatings with a small amount (1-5 wt % basis) of phenylmethyl silicone oil resulted in improved performance in several laboratory biological assays and in long-term field immersion assessments.
研究了将硅油掺入硅氧烷-聚氨酯防污释放涂层体系中的效果。通过增加界面滑移,已证明苯基甲基硅油的掺入可以改善基于硅酮的防污释放涂层的防污释放性能。改进的程度高度取决于所用硅油的类型和组成。硅氧烷-聚氨酯 (SiPU) 涂层系统是一种坚韧的防污释放解决方案,它结合了聚氨酯的机械耐久性,同时在商业标准方面保持与防污释放性能相当。为了进一步提高硅氧烷-PU 涂层系统的防污释放性能,研究了苯基甲基硅油的使用。制备了掺入具有不同组成和粘度的苯基甲基硅油的涂层配方。进行了接触角和表面能测量,以评估涂层的表面润湿性。X 射线光电子能谱 (XPS) 深度剖析实验证明,硅氧烷油与硅氧烷一起沿着涂层-空气界面进行自分层。在实验室生物测定试验中,几种涂层配方在对微藻(Navicula incerta)、大型海藻(Ulva linza)、成年藤壶(Balanus amphitrite syn. Amphibalanus amphitrite)和贻贝(Geukensia demissa)的防污释放性能方面显示出了改进或与商业标准相当的性能。选定的硅氧烷-PU 防污释放涂层在现场浸泡试验中也表现出了相当的防污释放性能。一般来说,用少量(基于 1-5wt%)苯基甲基硅油改性硅氧烷-PU 防污释放涂层可以提高几种实验室生物测定和长期现场浸泡评估的性能。