纤维素
材料科学
环境科学
相对湿度
吸附
化学工程
吸附
化学
气象学
物理
工程类
有机化学
作者
Yun Zhang,Weiye Zhu,Chi Zhang,Joseph Peoples,Xuan Li,Andrea Felicelli,Xiwei Shan,David M. Warsinger,Theodorian Borca‐Tasciuc,Xiulin Ruan,Tian Li
出处
期刊:Nano Letters
[American Chemical Society]
日期:2022-04-02
卷期号:22 (7): 2618-2626
被引量:68
标识
DOI:10.1021/acs.nanolett.1c04143
摘要
Atmospheric water harvesting (AWH) has received tremendous interest because of population growth, limited freshwater resources, and water pollution. However, key challenges remain in developing efficient, flexible, and lightweight AWH materials with scalability. Here, we demonstrated a radiative cooling fabric for AWH via its hierarchically structured cellulose network and hybrid sorption-dewing mechanisms. With 8.3% solar absorption and ∼0.9 infrared (IR) emissivity, the material can drop up to 7.5 °C below ambient temperature without energy consumption via radiative cooling. Water adsorption onto the hydrophilic functional groups of cellulose is dominated by sorption at low relative humidity (RH) and dewing at high RH. The cellulose network provides desirable mechanical properties with entangled high-aspect-ratio fibers over tens of adsorption-extraction cycles. In the field test, the cellulose sample exhibited water uptake of 1.29 kg/kg at 80% RH during the night. The profusion of radiative cooling fabric features desirable cost effectiveness and allows fast deployment into large-scale AWH applications.
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