Advances in Directional Wetting Surfaces for Enhanced Fluid Control: A Comprehensive Review

Author:

Li Chenrui12,Kim Beomsu12,Yoon Jonghun12,Sett Soumyadip3,Oh Junho12ORCID

Affiliation:

1. Department of Mechanical Design Engineering Hanyang University 222 Wangsimni‐ro, Seongdong‐gu Seoul 04763 South Korea

2. Department of Mechanical Engineering BK21 FOUR ERICA‐ACE Center Hanyang University Ansan Gyeonggi 15588 South Korea

3. Department of Mechanical Engineering Indian Institute of Technology (IIT)‐Gandhinagar Gandhinagar 382355 India

Abstract

AbstractControlling surface wettability and directing the flow of working fluids have crucial implications in various natural and engineering contexts. Understanding the fundamental principles of wettability and directional wetting is essential for effectively leveraging these phenomena to enhance the performance of engineering systems, such as microfluidics or heat exchangers. This comprehensive review summarizes of previous research, emphasizing recent advances by categorizing the structures and working principles associated with directional wetting surfaces. The efforts of researchers who have employed diverse strategies to manipulate the wetting behavior of liquids through both passive and active control mechanisms are highlighted. Passive directional transport surfaces require no additional energy while enabling large‐scale and continuous fluid control. Conversely, active directional wetting surfaces offer enhanced flexibility and precise control of liquid movement. Furthermore, insights into recent studies that focused on practical applications are provided and the current challenges that need to be addressed are discussed. This study serves as a guide for future research directions on the development of directional wetting surfaces and offers valuable recommendations for practical implementation.

Funder

Hanyang University

Ministry of Science and ICT, South Korea

Publisher

Wiley

Subject

Electrochemistry,Condensed Matter Physics,Biomaterials,Electronic, Optical and Magnetic Materials

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