Issue 4, 2025

Interfacial fluid manipulation with bioinspired strategies: special wettability and asymmetric structures

Abstract

The inspirations from nature always enlighten us to develop advanced science and technology. To survive in complicated and harsh environments, plants and animals have evolved remarkable capabilities to control fluid transfer via sophisticated designs such as wettability contrast, oriented micro-/nano-structures, and geometry gradients. Based on the bioinspired structures, the on-surface fluid manipulation exhibits spontaneous, continuous, smart, and integrated performances, which can promote the applications in the fields of heat transfer, microfluidics, heterogeneous catalysis, water harvesting, etc. Although fluid manipulating interfaces (FMIs) have provided plenty of ideas to optimize the current systems, a comprehensive review of history, classification, fabrication, and integration focusing on their interfacial chemistry and asymmetric structure is highly required. In this review, we systematically introduce development and highlight the state-of-the-art progress of bioinspired FMIs. Firstly, the biological prototype and development timeline are presented, and the underlying mechanism of on-surface fluid control on versatile structures is analyzed. Secondly, the definition and classification of FMIs as well as the strategy for controlling fluid/interface interaction are discussed. Thirdly, emergent applications of FMIs in practical scenarios including fog/vapor collection, fluid diodes, interfacial catalysis, etc. are presented. Furthermore, the challenges and prospects of interfacial liquid manipulation are concluded. We envision that this review should provide guidance for the incorporation of FMIs into suitable situations, which enlightens interdisciplinary research and practical applications in the fields of interface chemistry, materials design, bionic science, fluid dynamics, etc.

Graphical abstract: Interfacial fluid manipulation with bioinspired strategies: special wettability and asymmetric structures

Article information

Article type
Review Article
Submitted
28 Oct 2024
First published
02 Jan 2025

Chem. Soc. Rev., 2025,54, 1733-1784

Interfacial fluid manipulation with bioinspired strategies: special wettability and asymmetric structures

H. Bai, T. Zhao and M. Cao, Chem. Soc. Rev., 2025, 54, 1733 DOI: 10.1039/D4CS01073F

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