材料科学
发射率
制作
复合数
水分
静电纺丝
热的
复合材料
多孔性
纤维
化学气相沉积
工艺工程
热阻
纳米技术
水蒸气
过程(计算)
电子设备和系统的热管理
纳米纤维
光纤
热舒适性
辐射传输
热辐射
沉积(地质)
红外线的
辐射冷却
热传递
热稳定性
光电子学
收缩率
光伏系统
纳米复合材料
热导率
卷到卷处理
含水量
作者
Zhenhong Zhao,Xiaobao Gong,Junwen Cheng,Jing Zhao,Xungai Wang
出处
期刊:Small
[Wiley]
日期:2026-03-15
卷期号:22 (24): e13599-e13599
被引量:1
标识
DOI:10.1002/smll.202513599
摘要
ABSTRACT Conventional radiative cooling materials often suffer from limited functionality, poor environmental adaptability, and insufficient integration of thermal regulation with moisture management. Inspired by the layered and hierarchical organization of human skin, we designed a hierarchically structured composite material via electrospinning and electrospraying to achieve multifunctional personal thermal–moisture management. Polyamide nanofibers with controllable hydrophobic porous structures were first fabricated through a one‐step electrospinning process using ethanol as a green solvent. Subsequently, precise control of charged droplet ejection enabled the uniform deposition of functional nanospheres onto the fiber surfaces, synergistically enhancing broadband solar reflectance and infrared thermal emission. The resulting composite exhibited excellent radiative cooling performance, achieving a solar reflectance of 97.3%, an infrared emissivity of 91.3%, and a temperature reduction of 7.3°C under identical conditions, outperforming conventional cotton fabrics. Meanwhile, high water resistance (67.4 kPa) and a moisture vapor transmission rate of 7.8 kg·m −2 ·d −1 were simultaneously realized, enabling an effective balance between wearing comfort and environmental protection. Notably, the entirely green‐solvent‐based fabrication process provides a scalable and sustainable pathway for advanced thermal management textiles.
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