Li Mengqing, Song LiangJun, Zheng Yu, Liu Nuoran, Yu Huizhu, Jin Rencheng, Xiang Tengfei, Li Ruiqian
Institute of Noise & Vibration, Naval University of Engineering Wuhan 430033 China.
School of Chemistry & Materials Engineering, Fuyang Normal University Fuyang 236037 China
RSC Adv. 2025 Jul 7;15(29):23342-23350. doi: 10.1039/d5ra02098k. eCollection 2025 Jul 4.
The design and facile fabrication of a hierarchical superhydrophobic surface with robust stability is the key for industrialization of superhydrophobic materials. Herein, a robust hierarchical superhydrophobic Zn coating (EAE-Zn) with armor-like structure was fabricated by two-step electrodeposition accompanied with an indispensable intermediate activation. The results showed that the activation treatment was favorable for the formation and growth of nano-flakes on the side surfaces of vertically aligned micro-flakes. Notably, the armor-like EAE-Zn coating still sustained its water repellency even after suffering from sandpaper abrasion, tape peeling, water drop impact and long-term immersion in salt solution, indicating that the vertically aligned micro-plates acting as "armor" could prevent effectively the abrasion of the fragile nano-structures. Besides, the superior non-wettability and impermeability endowed the EAE-Zn coating with long-term corrosion resistance ability. Therefore, these findings offer a novel strategy to design a hierarchical superhydrophobic surface with robust stability and superior corrosion resistance.
设计并轻松制备具有稳健稳定性的分级超疏水表面是超疏水材料工业化的关键。在此,通过两步电沉积并伴随必不可少的中间活化过程,制备了具有铠甲状结构的稳健分级超疏水锌涂层(EAE-Zn)。结果表明,活化处理有利于在垂直排列的微片侧面形成并生长纳米片。值得注意的是,即使经过砂纸打磨、胶带剥离、水滴冲击以及长期浸泡在盐溶液中,铠甲状的EAE-Zn涂层仍保持其疏水性,这表明垂直排列的微板作为“铠甲”可以有效防止脆弱纳米结构的磨损。此外,优异的非润湿性和不透性赋予EAE-Zn涂层长期耐腐蚀能力。因此,这些发现为设计具有稳健稳定性和优异耐腐蚀性的分级超疏水表面提供了一种新策略。