Please use this identifier to cite or link to this item: http://hdl.handle.net/10397/99648
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Title: Heterogeneously engineered porous media for directional and asymmetric liquid transport
Authors: Huang, G 
Wei, X 
Gu, Y 
Kang, Z 
Lao, L
Li, L 
Fan, J 
Shou, D 
Issue Date: 19-Jan-2022
Source: Cell reports physical science, 19 Jan. 2022, v. 3, no. 1, 100710
Abstract: Passive regulation of liquid transport in porous media in a directional or asymmetric manner has become increasingly critical to emerging applications, such as personal moisture management, water harvesting, and liquid separation. Over the past decade, heterogeneously engineering porous materials and structures for tunable liquid transport has triggered technological revolutions in those areas based on nature-inspired design, metamaterial development, and model-driven optimization. Herein, we discuss the latest developments in directional and asymmetric liquid movement created by material and structural heterogeneity, with a focus on mechanistic models, physical mechanisms, and engineering strategies to provide an improved understanding of the controllability of the directed liquid motion. We also explore the diverse applications of enhanced fluid directionality and asymmetry, from overviewing fabrication methods to analyzing significant affecting factors, including surface wettability, pore size, and flow path profile. Current challenges and research gaps are summarized to provide a road map for potential research opportunities.
Keywords: Directional and asymmetric liquid transport
Heterogeneous engineering
Personal moisture management
Water harvesting
Liquid separation
Publisher: Cell Press
Journal: Cell reports physical science 
EISSN: 2666-3864
DOI: 10.1016/j.xcrp.2021.100710
Rights: © 2021 The Author(s).
This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
The following publication Huang, G., Wei, X., Gu, Y., Kang, Z., Lao, L., Li, L., . . . Shou, D. (2022). Heterogeneously engineered porous media for directional and asymmetric liquid transport. Cell Reports Physical Science, 3(1), 100710 is available at https://doi.org/10.1016/j.xcrp.2021.100710.
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