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Updated: Jan 10, 2026

Phase Diagram Characterization Using Magnetic Beads as Liquid Carriers
Published on: September 4, 2015
Interface Design of Liquid-Based Membranes for Multiphase Separations
Yunmao Zhang1,2, Yuhang Han2, Huaixin Li2
1Engineering Research Center of Environment-Friendly Functional Materials, Ministry of Education, College of Materials Science and Engineering, Huaqiao University, Xiamen 361021, China.
Abstract:
Superwettable materials have transformed separation processes by manipulating multiphase interface interactions at the micronano scale. Liquid-based membranes (LBMs) are created by designing the micro/nanostructure and chemical composition of a porous solid matrix, then infusing it with a compatible functional liquid. Unlike traditional membranes relying on static surfaces or size exclusion, LBMs utilize dynamic liquid interfaces for precise, selective, and energy-efficient separations. This perspective discusses the design principles of LBMs, focusing on interfacial interactions, stimuli-responsive functions, and the compatibility between solid matrices and functional liquids. LBMs are promising for liquid, gas, and solid separations, but challenges in long-term stability, scalability, and environmental compatibility remain. These materials hold significant potential for sustainable, high-performance separation technologies addressing industrial and environmental challenges.
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