Gu Wancheng, Wang Wei, Jiao Xuan, Deng Weilin, Xia Yage, Yu Xinquan, Zhang Youfa
Jiangsu Key Laboratory of Advanced Metallic Materials, School of Materials Science and Engineering, Southeast University Nanjing 211189 PR China
RSC Adv. 2022 Jun 6;12(26):16510-16516. doi: 10.1039/d2ra02853k. eCollection 2022 Jun 1.
Superamphiphobic coatings may significantly change the wettability of a substrate, and so are attractive for applications in aero/marine engineering, biotechnology, and heat transfer. However, the coatings are caught in a double bind when their durability is considered, as they are vulnerable to mechanical abrasion. Meanwhile, the wide use of organic solvents for preparing the coatings generates environmental pollution. Here, we present a waterborne superamphiphobic coating through one-step spraying that repels a wide range of liquids. By tailoring the repellence of the nano-silica to waterborne resin, a network structure is constructed to protect the embedded nano-silica from damage. Thus, the coatings are durable against 725 cycles of friction tester abrasion under a load of 250 g, showing a significant improvement in the mechanical durability by 3-25 times. Moreover, our coating also shows excellent comprehensive durability, including resistance to oil-flow erosion, falling sand impact, chemical attack, thermal treatment, This strategy can be introduced to various waterborne resins, demonstrating its universality, and may offer a new insight to design sustainable superamphiphobic coatings for long-term practical applications.
超双疏涂层可显著改变基底的润湿性,因此在航空/海洋工程、生物技术和热传递等领域的应用中具有吸引力。然而,考虑到其耐久性时,这类涂层陷入了两难境地,因为它们易受机械磨损。同时,制备涂层时广泛使用有机溶剂会造成环境污染。在此,我们通过一步喷涂法制备了一种能排斥多种液体的水性超双疏涂层。通过调整纳米二氧化硅对水性树脂的排斥性,构建了一种网络结构来保护嵌入的纳米二氧化硅免受损伤。因此,该涂层在250克负载下能经受725次摩擦测试仪磨损循环,机械耐久性显著提高了3至25倍。此外,我们的涂层还表现出优异的综合耐久性,包括耐油流侵蚀、落砂冲击、化学侵蚀、热处理等。这种策略可应用于各种水性树脂,证明了其通用性,并可能为设计用于长期实际应用的可持续超双疏涂层提供新的思路。