材料科学
复合材料
钛
纳米线
硅
退火(玻璃)
涂层
接触角
磨损(机械)
纳米技术
耐久性
超疏水涂料
各向同性腐蚀
粘附
粘着
蚀刻(微加工)
作者
Seyed Mehran Mirmohammadi,Miika Heikkilä,Laura Fieber,Mohammad Awashra,Sara Hamed,Suprit Bhusare,Gaurav Mohanty,Robin H. A. Ras,Ville Jokinen,Sami Franssila
标识
DOI:10.1021/acsami.5c13616
摘要
Superhydrophobic surfaces hold great promise for various engineering applications. However, their fragility and limited durability in real-world scenarios pose significant challenges. Here, a durable superhydrophobic and icephobic surface is fabricated using the metal-assisted chemical etching method to create silicon nanowires within inverted pyramidal microstructures. Mechanical robustness is introduced by applying a hard coating to the structure through titanium film deposition, followed by annealing in a nitrogen atmosphere, which forms titanium silicide and titanium nitride. The hard-coated surfaces can endure up to 60 g of sand abrasion or 20 icing-shearing cycles while still retaining their superhydrophobic properties (advancing and receding contact angles of approximately 150°) and icephobic properties (ice adhesion strength of approximately 10 kPa).
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