Li Dan, Liu Weiyi, Peng Tianhan, Liu Yunya, Zhong Lieshuang, Wang Xiufeng
School of Materials Science and Engineering, Xiangtan University, Xiangtan, Hunan, 411105, China.
Small. 2025 Apr;21(13):e2409730. doi: 10.1002/smll.202409730. Epub 2025 Mar 5.
To alleviate the discomfort caused by excessive sweating, there is a growing emphasis on developing wearable textiles that can evacuate sweat autonomously. These advanced fabrics, unlike their absorbent and retention-prone predecessors, harness the Janus structure-distinguished by its asymmetric wettability-to facilitate one-way transport of liquid. This unique characteristic has significant potential in addressing issues related to excessive bodily moisture and propelling the realm of smart wearables. This review offers a comprehensive overview of the advancements in Janus-structured textiles within the wearable field, delving into the mechanisms behind their unidirectional liquid transport, which rely on chemical gradient and curvature gradient strategies, alongside the methodologies for achieving asymmetric wettability. It further spotlights the multifaceted applications of Janus-based textiles in wearables, including moisture and thermal management, wound care, and sweat analysis. In addition to examining existing hurdles, the review also explores avenues for future innovation, envisioning a new era of Janus textiles tailored for personalized comfort and health monitoring capabilities.
为了减轻过度出汗引起的不适,人们越来越重视开发能够自主排出汗液的可穿戴纺织品。这些先进的织物不同于以往容易吸收和保留汗液的织物,它们利用具有不对称润湿性的Janus结构来促进液体的单向传输。这一独特特性在解决与身体过度出汗相关的问题以及推动智能可穿戴设备领域发展方面具有巨大潜力。本文综述全面概述了可穿戴领域中Janus结构纺织品的进展,深入探讨了其单向液体传输背后的机制,这些机制依赖于化学梯度和曲率梯度策略,以及实现不对称润湿性的方法。它还重点介绍了基于Janus的纺织品在可穿戴设备中的多方面应用,包括湿度和温度管理、伤口护理以及汗液分析。除了研究现有障碍外,本文综述还探索了未来创新的途径,设想了一个为个性化舒适和健康监测能力量身定制的Janus纺织品新时代。