蒸发器
材料科学
壳体(结构)
纱线
复合材料
水下
合理设计
芯(光纤)
化学工程
纳米技术
色谱法
机械工程
化学
工程类
热交换器
海洋学
地质学
作者
Ailin Li,Wendi Liu,Aixin Yu,Yunna Hao,Wenjing Chen,Maorong Zheng,Chentian Zhang,Huijie Liu,Jianyong Yu,Liming Wang,Xiaohong Qin
出处
期刊:Nano Letters
[American Chemical Society]
日期:2024-01-08
卷期号:24 (3): 1034-1043
被引量:7
标识
DOI:10.1021/acs.nanolett.3c04748
摘要
Interfacial solar vapor generation holds great promise for alleviating the global freshwater crisis, but its real-world application is limited by the efficiently choppy water evaporation and industrial production capability. Herein, a self-floating solar evaporator with an underwater aerophilic surface is innovatively fabricated by weaving core–shell yarns via mature weaving techniques. The core–shell yarns possess capillary water channels in the hydrophilic cotton core and can trap air in the hydrophobic electrospinning nanofiber shell when submerged underwater, simultaneously realizing controllable water supplies, stable self-flotation, and great thermal insulation. Consequently, the self-floating solar evaporator achieves an evaporation rate of 2.26 kg m–2 h–1 under 1 sun irradiation, with a reduced heat conduction of 70.18 W m–2. Additionally, for the first time, a solar evaporator can operate continuously in water with varying waveforms and intensities over 24 h, exhibiting an outdoor cumulative evaporation rate of 14.17 kg m–2 day–1.
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