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Wettability-driven synergistic resistance of scale and oil on robust superamphiphobic coating

润湿 涂层 砂纸 耐水性 材料科学 超疏水涂料 化学工程 接触角 磨损(机械) 复合材料 工程类
作者
Yixuan Wang,Jiexin Li,Zhihao Shang,Chengcheng Feng,Jianmin Gu,Maosheng Ye,Ran Zhao,Dan-Na Liu,Jingxin Meng,Shutao Wang
出处
期刊:Chinese Chemical Letters [Elsevier]
卷期号:35 (7): 109623-109623 被引量:1
标识
DOI:10.1016/j.cclet.2024.109623
摘要

Disgusting deposits (e.g., scale and crude oil) in daily life and industrial production are always serious problems, posing great threats to the safety and economic development. However, most of developed coatings can only conquer one part of these deposits such as superhydrophobic coatings possess anti-scaling capacity but would adhere crude oil. To integrate scale resistance with oil repellence, we herein report a robust superamphiphobic (SAB) coating simultaneously reducing pollution of scale and oil for extended period of time (two weeks with over 98% reduction). Compared with single role of superhydrophobic and amphiphilic surfaces, the SAB coating can not only inhibit interfacial nucleation of scale but also reduce the adhesion of formed scale and polluted oil. The durability of the SAB coating is evaluated via mechanical tests (sandpaper abrasion, tape stripping and sand falling) and chemical corrosion (corrosive liquid immersing), revealed by sustainable high contact angles and low contact angle hysteresis of water and oil. The universality of this strategy can be further confirmed by adding different particles like kaolin, Al2O3, and SiO2, resisting multiple types of scale (i.e., CaSO4, BaSO4 and MgCO3) and oil (i.e., glycerol, glycol, and mineral oil). Therefore, this study provides an ideal avenue for resisting scale and oil, which may be used for conquering the complexity of application environments (e.g., oil production and transportation).
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