Continuous, Spontaneous, and Directional Water Transport in the Trilayered Fibrous Membranes for Functional Moisture Wicking Textiles

水运 材料科学 润湿 超亲水性 水分 渗透(战争) 静电纺丝 纳米技术 化学工程 复合材料 水流 化学 环境科学 环境工程 聚合物 工程类 生物化学 运筹学
作者
Dongyang Miao,Zhan Huang,Xianfeng Wang,Jianyong Yu,Bin Ding
出处
期刊:Small [Wiley]
卷期号:14 (32): e1801527-e1801527 被引量:337
标识
DOI:10.1002/smll.201801527
摘要

Abstract Directional water transport is a predominant part of functional textiles used for continuous sweat release in daily life. However, it has remained a great challenge to design such textiles which ensure continuous directional water transport and superior prevention of water penetration in the reverse direction. Here, a scalable strategy is reported to create trilayered fibrous membranes with progressive wettability by introducing a transfer layer, which can guide the directional water transport continuously and spontaneously, thus preventing the skin from being rewetted. The resulting trilayered fibrous membranes exhibit a high one‐way transport index R (1021%) and a desired breakthrough pressure (16.1 cm H 2 O) in the reverse direction, indicating an ultrahigh directional water transport capacity. Moreover, on the basis of water transport behavior, a plausible mechanism is proposed to provide insight into the integrative and cooperative driving forces at the interfaces of trilayered hydrophobic/transfer/superhydrophilic fibrous membranes. The successful synthesis of such fascinating materials would be valuable for the design of functional textiles with directional water transport properties for personal drying applications.
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