Key Laboratory of Clay Mineral Applied Research of Gansu Province, Lanzhou Institute of Chemical Physics , Chinese Academy of Sciences , Lanzhou 730000 , P. R. China.
Department of Chemical Engineering, College of Petrochemical Engineering , Lanzhou University of Technology , Lanzhou 730050 , P. R. China.
ACS Appl Mater Interfaces. 2018 Nov 14;10(45):39391-39399. doi: 10.1021/acsami.8b15061. Epub 2018 Nov 1.
Bioinspired superhydrophobic coatings are of great interest in academic and industrial areas. However, their real-world applications are hindered by some main bottlenecks, especially the pollutive preparation methods (e.g., organic solvents and fluorinated compounds) and poor mechanical stability. Here, we report for the first time the totally waterborne, nonfluorinated, mechanically robust, and self-healing superhydrophobic coatings. The coatings were fabricated by spray-coating polyurethane (PU) aqueous solution and a hexadecyl polysiloxane-modified SiO (SiO@HD-POS) aqueous suspension onto substrates using PU as the adhesive. The SiO@HD-POS suspension was synthesized by HCl-catalyzed reactions among hexadecyltrimethoxysilane, tetraethoxysilane, and SiO nanoparticles. Besides high superhydrophobicity, the coatings exhibit exceptional mechanical stability against sandpaper abrasion for 200 cycles at 9.8 kPa and tape-peeling for 200 cycles at 90.5 kPa because of high durability and unique hierarchical macro-/nanostructure of the coating as well as solid lubrication of the SiO@HD-POS nanoparticles fallen off from the coatings. The coatings also show fast and stable self-healing capability owing to migration of the healing agent (HD-POS) to the damaged surface. Moreover, the coatings exhibit good static and dynamic anti-icing performance in outdoor environment (-15 °C, relative humidity = 54%). The superhydrophobic coatings may be used in various areas because the main bottlenecks have been successfully broken.
受生物启发的超疏水涂层在学术和工业领域都引起了极大的关注。然而,它们的实际应用受到一些主要瓶颈的限制,特别是有污染的制备方法(例如有机溶剂和含氟化合物)和较差的机械稳定性。在这里,我们首次报道了完全水性的、无氟的、机械坚固的和自修复的超疏水涂层。该涂层是通过喷涂聚氨酯(PU)水溶液和十六烷基聚硅氧烷改性的 SiO(SiO@HD-POS)水悬浮液在基底上制备的,其中 PU 用作粘合剂。SiO@HD-POS 悬浮液是通过十六烷基三甲氧基硅烷、四乙氧基硅烷和 SiO2 纳米粒子之间的 HCl 催化反应合成的。除了具有高超疏水性外,该涂层还表现出优异的机械稳定性,可在 9.8 kPa 下经受 200 次砂纸磨损,在 90.5 kPa 下经受 200 次胶带剥离,这是因为涂层具有高耐久性和独特的宏观/纳米分级结构以及从涂层上脱落的 SiO@HD-POS 纳米粒子的固体润滑作用。该涂层还具有快速而稳定的自修复能力,这是由于修复剂(HD-POS)迁移到受损表面的缘故。此外,该涂层在户外环境(-15°C,相对湿度=54%)中表现出良好的静态和动态抗结冰性能。由于主要瓶颈已被成功突破,因此这种超疏水涂层可能会在各个领域得到应用。