材料科学
杰纳斯
润湿
发射率
辐射冷却
蒸发
红外线的
辐射传输
光电子学
热的
选择性
光热治疗
热辐射
基质(水族馆)
接触角
复合材料
石墨烯
纳米技术
电子设备和系统的热管理
光学
化学工程
图层(电子)
选择性表面
摩尔吸收率
杰纳斯粒子
低发射率
纳米材料
折射率
喷墨打印
热导率
复合数
圆柱
纳米颗粒
作者
Meng-Ya Yu,Jiong Kong,Zhuo Wang,Zhuo Wang,Mi Zheng,Mi Zheng,Wei-Ming Yuan,Min Zheng,Min Zheng,Zuo-Shan Wang,Zuo-Shan Wang
标识
DOI:10.1021/acsami.6c06884
摘要
Passive daytime radiative cooling (PDRC) textiles offer a zero-energy approach to personal thermal management, yet most designs compromise wearing comfort due to hydrophobicity-induced sweat accumulation. Herein, we report a hierarchical metafabric with spectral selectivity and Janus wettability that integrates efficient radiative cooling with directional sweat management. Constructed via in situ nanoparticle growth and layer-by-layer electrospinning, the metafabric comprises a hydrophilic CaSO 3 /PA66-SF layer and a hydrophobic Al 2 O 3 /PVDF layer. This design achieves a high solar reflectance of 94.2% and an average infrared emissivity of 97.3%. Simultaneously, the hydrophilic–hydrophobic gradient enables directional sweat transport with a one-way transport index of 1074% and a water evaporation rate of 0.3 g h –1 . Furthermore, the metafabric possesses favorable antibacterial activity, mechanical strength, and breathability. This study has certain application potential in multifunctional integrated thermohumidity-regulating textiles.
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