材料科学
光热治疗
蜂巢
蒸发
纳米技术
蜂窝结构
表面改性
化学工程
光电子学
复合材料
物理
工程类
热力学
作者
Xiaofei Liu,Lanlan Hou,Rongjun Hu,Huiying Zhang,Xuefeng Zhang,Xinran Ge,Ying Zhang,Guichu Yue,Zhimin Cui,Jie Bai,Jingchong Liu,Nü Wang,Yong Li,Yong Zhao
标识
DOI:10.1021/acsami.4c14726
摘要
Solar evaporation is an ecofriendly and practical method for seawater desalination. The photothermal layer, which absorbs solar energy and converts it to thermal energy, plays a crucial role in enhancing the efficiency of the evaporator. However, structural design methods for photothermal layers are often complex and energy-intensive. This work reports a simple and efficient strategy for fabricating a necklace-like beaded nanofiber self-organized honeycomb-structured photothermal material. The honeycomb-like cavities form numerous microscale thermal traps, achieving thermal localization while maintaining high energy utilization efficiency, which not only increases light absorption but also facilitates the diffusion and escape of steam. Besides, the hydrophobic honeycomb layer separates the photothermal layer and the interface water, which reduces considerable heat conduction loss and achieves an effective antisalting performance. These functional features endow the evaporator with an evaporation efficiency of 92.9%, and the evaporation rate reaches 2.11 kg m–2 h–1 at 1 sun irradiance, demonstrating its great potential for practical solar-driven seawater desalination under natural sunlight.
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