Wang Huanhuan, Lu Haitao, Zhang Xia
National & Local Joint Engineering Research Center for Applied Technology of Hybrid Nanomaterials, Henan University Kaifeng 475004 PR China
RSC Adv. 2019 Sep 3;9(47):27702-27709. doi: 10.1039/c9ra04997e. eCollection 2019 Aug 29.
Compared with superhydrophobic surfaces, superamphiphobic surfaces have a wider commercially availability. However, the initially fragile nature of micro or nano-structures hinders the large-scale applications of superamphiphobic surfaces. In this work, we report free-standing monoliths with durable superamphiphobic properties not only in the outer layer surfaces but also extending throughout the whole volume, which will demonstrate permanent superamphiphobicity. The monolith surface can repel a series of organic solutions with a surface tension as low as 36.4 mN m, and display good self-cleaning effect toward to blood or viscous mud. In addition, the monolith can maintain the superhydrophobicity no matter whether facing corrosive solution attack or mechanical abrasion, indicating the excellent chemical and mechanical properties. The monolith surfaces also display delayed-icing property and easy de-icing process.
与超疏水表面相比,超双疏表面具有更广泛的商业可用性。然而,微纳结构最初的脆弱性阻碍了超双疏表面的大规模应用。在这项工作中,我们报道了一种独立的整体材料,它不仅在外层表面具有持久的超双疏特性,而且在整个体积内都具有这种特性,这将表现出永久的超双疏性。该整体材料表面可以排斥一系列表面张力低至36.4 mN/m的有机溶液,并且对血液或粘性泥浆具有良好的自清洁效果。此外,无论面对腐蚀性溶液侵蚀还是机械磨损,该整体材料都能保持超疏水性,表明其具有优异的化学和机械性能。该整体材料表面还表现出延迟结冰特性和易于除冰的过程。