Key Laboratory of Clay Mineral Applied Research of Gansu Province and State Key Laboratory for Oxo Synthesis & Selective Oxidation, Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences , Lanzhou 730000, P.R. China.
Graduate University of the Chinese Academy of Sciences , Beijing 100049, P.R. China.
ACS Appl Mater Interfaces. 2017 Jan 18;9(2):1941-1952. doi: 10.1021/acsami.6b13539. Epub 2017 Jan 5.
Superamphiphobic coatings with low sliding angles (SAs) and high durability are very attractive in academic and industrial areas but are very challenging to invent. Here, inspired by Maya Blue, we report for the first time colorful superamphiphobic coatings with low SAs and high durability by the combination of natural palygorskite (PAL) nanorods and organosilanes. The coatings were characterized using a wide range of electron microscopy and other analytical techniques. Different from the previously reported methods, the micro/nanostructure of the superamphiphobic coatings were constructed by using the abundant natural PAL nanorods as the building blocks. Superamphiphobicity of the coatings depends on surface morphology and chemical composition of the coatings, which can be regulated by the concentrations of PAL and organosilanes. The colorful superamphiphobic coatings feature high contact angles and low SAs for various liquids, including water and n-decane. The coatings also showed high mechanical, environmental, chemical, and thermal durability even under harsh conditions. Moreover, the coatings in different colors with comparable superamphiphobicity and durability can be prepared using different cationic dyes applied onto various substrates via the same approach. The colorful superamphiphobic coatings with low SAs and high durability may be useful in various fields, e.g., anticreeping of oils and restoration of cultural relics.
具有低滑动角(SA)和高耐久性的超双疏涂层在学术和工业领域非常有吸引力,但发明它们极具挑战性。在这里,受玛雅蓝的启发,我们首次通过天然坡缕石(PAL)纳米棒和有机硅烷的组合报告了具有低 SA 和高耐久性的彩色超双疏涂层。使用多种电子显微镜和其他分析技术对涂层进行了表征。与之前报道的方法不同,超双疏涂层的微/纳米结构是通过使用丰富的天然 PAL 纳米棒作为构建块来构建的。涂层的超双疏性能取决于涂层的表面形貌和化学成分,这可以通过 PAL 和有机硅烷的浓度来调节。彩色超双疏涂层对各种液体(包括水和正癸烷)表现出高接触角和低 SA。即使在恶劣条件下,涂层也表现出高机械、环境、化学和热稳定性。此外,通过相同的方法,使用不同的阳离子染料施加到各种基底上,可以制备具有可比的超双疏性和耐久性的不同颜色的彩色超双疏涂层。具有低 SA 和高耐久性的彩色超双疏涂层可能在各种领域有用,例如防止油的爬动和文物的修复。