4.7 Article

Biomimetic materials in oil/water separation: Focusing on switchable wettabilities and applications

Journal

ADVANCES IN COLLOID AND INTERFACE SCIENCE
Volume 320, Issue -, Pages -

Publisher

ELSEVIER
DOI: 10.1016/j.cis.2023.103003

Keywords

Switchable; Special wettability; Smart materials; Oil/water separation

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This review provides an overview of the fundamental principles of wettability in the oil-water separation process and the research progress of switchable wettability smart materials. It discusses various types of special wettability materials, their applications, and challenges, and offers insights into future prospects.
Clean water resources are crucial for human society, as the leakage and discharge of oily wastewater not only harm the economy but also disrupt our living environment. Therefore, there is an urgent need for efficient oilwater separation technology. Surfaces with switchable superwetting behavior have garnered significant attention due to their importance in both fundamental research and practical applications. This review introduces the fundamental principles of wettability in the oil-water separation process, the basic theory of switchable wettability, and the mechanisms involved in oil-water separation. Subsequently, the review discusses the research progress, challenges, and issues associated with three conventional types of special wettability materials: superhydrophobic/superoleophilic materials, superhydrophilic/superoleophobic materials, and superhydrophilic/underwater superoleophobic materials. Most importantly, it provides a detailed exploration of recent advancements in switchable wettability smart materials, which combine elements of traditional special wettability materials. These include stimulus-responsive smart materials, pre-wetting-induced materials, and Janus materials. The discussion covers key response factors, detailed examples of representative works, design concepts, and fabrication strategies. Finally, the review offers a comprehensive summary of switchable superwetting smart materials, encompassing their advantages and disadvantages, persistent challenges, and future prospects.

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