oil droplet manipulationoil-repellent coatingsoil/water separationsuperoleophobic surfacessuperoleophobicity
Figures from the paper
Abstract (AI)
Superoleophobicity is a phenomenon where the contact angles of various oil droplets with low surface tension on a solid surface are larger than 150°. In the past few years, there has been much growing interest in the design and application of superoleophobic surfaces. Such surfaces have great significance for both fundamental research and a variety of practical applications, including oil-repellent coatings, self-cleaning, oil/water separation, oil droplet manipulation, chemical shielding, anti-blocking, designing liquid microlens, oil capture, bioadhesion, guiding oil movement and floating on oil. Herein, we systematically summarize the recent developments of superoleophobic surfaces. This review focuses on the design, fabrication, characteristics, functions, and important applications of various superoleophobic surfaces. Although many significant advances have been achieved, superoleophobic surfaces are still in their "toddler stage" of development. The current challenges and future prospects of this fast-growing field of superoleophobicity are discussed.
Key Findings
1
Despite substantial progress, superoleophobic surfaces remain at an early developmental stage, with important challenges and future research directions unresolved.
2
Superoleophobic surfaces enable diverse applications, including oil-repellent coatings, self-cleaning, oil/water separation, droplet manipulation, chemical shielding, and oil capture.
3
Superoleophobicity is defined by oil droplets with low surface tension exhibiting contact angles greater than 150° on solid surfaces.
4
The review systematically covers the design, fabrication, characteristics, functions, and applications of superoleophobic surfaces.
Research Object
superoleophobic surfaces
Research Subject
the design, fabrication, characteristics, functions, applications, challenges, and future prospects of superoleophobic surfaces
Publication Details
Publication Date
2017-01-01
Journal
Publisher
ISSN
Open access PDF
Access Type
Author Information
Download PDF
Subscribe to digest