CAS Key Laboratory of Bio-inspired Materials and Interfacial Science, Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Beijing, 100190, P. R. China.
University of Chinese Academy of Sciences, Beijing, 100049, P. R. China.
Adv Mater. 2022 Apr;34(16):e2110408. doi: 10.1002/adma.202110408. Epub 2022 Mar 13.
Underwater superoleophobic surfaces featuring anti-oil-fouling properties are of great significance in widespread fields. However, their complicated engineering process and weak interfacial adhesion strength with underlying substrates severely hamper these ideal surfaces toward practical applications. Here, a moss-inspired sticky-slippy skin composed of layered organohydrogel is reported through a one-step wetting-enabled-transfer (WET) strategy, which unprecedentedly integrates robust inherent adhesion with durable anti-oil-fouling properties. The sticky organogel layer can be simply attached to various substrates, from metals and plastics to glass, independent of any surface pretreatment. The slippy hydrogel layer enables stable underwater superoleophobicity and ultralow oil adhesion for diverse kinds of oils. The sticky-slippy skin features outstanding comprehensive properties including easy-pasting, anti-swelling/anti-bending, compatibility with commercial adhesives, acid/alkali resistance, environmental friendliness, and substrate universality. The design strategy with integrated functions provides a clue to accelerate the development of bioinspired multifunctional interfacial materials toward real-world applications.
水下超疏油表面具有抗油污特性,在广泛的领域中具有重要意义。然而,它们复杂的工程工艺以及与基底较弱的界面附着力严重阻碍了这些理想表面的实际应用。在这里,通过一步湿化启用转移(WET)策略,报道了一种受苔藓启发的粘性滑溜皮肤,该策略由分层有机水凝胶组成,前所未有地将强固有附着力与持久的抗油污性能结合在一起。粘性有机凝胶层可以简单地附着在各种基底上,从金属和塑料到玻璃,无需任何表面预处理。滑溜的水凝胶层可实现稳定的水下超疏油性和超低油附着性,适用于各种油类。粘性滑溜皮肤具有出色的综合性能,包括易于粘贴、抗膨胀/抗弯曲、与商业粘合剂兼容、耐酸碱、环保以及基底通用性。这种集成功能的设计策略为加速仿生多功能界面材料向实际应用的发展提供了线索。