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A Self‐Floating, Self‐Insulating, and Janus Evaporator Inspired by Victoria Amazonica

作者:Wenhua Yu, Zhengshun Zhang, Xue Bai, Rui Gao, Qinfei Ke, Chen Huang · 发表于:Small · 年份:2025 · DOI:10.1002/smll.202505228 · 被引用次数:3 · 研究领域:Solar-Powered Water Purification Methods、Membrane Separation Technologies、Solar Thermal and Photovoltaic Systems

Abstract Solar‐powered photothermal evaporators offer a sustainable approach for freshwater extraction. Nevertheless, their practical application is hindered by the difficulties in integrating thermal insulation, self‐flotation, and efficient water transport within a single device. Inspired by the structure of Victoria Amazonica , a fiber‐based solar steam evaporator is developed, featuring self‐floating, self‐insulating, and unidirectional water‐transfer. The design employs a Janus nonwoven (JN), fabricated by precisely adjusting the weight ratio of a hydrophilic viscose (VIS) fiber web and a hydrophobic polypropylene/polyethylene (PP/PE) core‐sheath fiber web, followed by a needle punching process to bond them together. The resulting high fluffiness and vertically aligned fiber pillars form continuous water channels across the JN thickness. This structure enables ultralow thermal conductivity (< 0.05 W mK −1 ), minimal conductive heat loss (0.6%), sustained water supply, and rapid salt ion diffusion, leading to a high photothermal conversion efficiency of 90.8%. More attractively, the evaporator maintains permanent buoyancy on seawater, since its density (1.06 g cm − 3 ) is even lower than that of seawater (1.07 g cm − 3 ). By integrating biomimetic structural engineering with scalable and affordable fabrication, this work may provide a competitive pathway to tackling global freshwater scarcity while enhancing the design of high‐performance solar desalination systems.