材料科学
锂(药物)
光热治疗
超亲水性
蒸发
气凝胶
萃取(化学)
纳米技术
阳极
蒸发器
图层(电子)
太阳能
光热效应
化学工程
微尺度化学
复合数
灵活性(工程)
工艺工程
纳米材料
能源消耗
作者
Guoyan Yang,Yin Zuozhu,Xiangyu Han,Le Peng,Yingping Yang,Jilin Xu,Yongcun Ma,Zhen Hong,Yidan Luo,Mingshan Xue
标识
DOI:10.1002/adfm.202527626
摘要
Abstract Facing the global surge in lithium demand and the high energy consumption challenges of traditional extraction technologies. Inspired by the natural release mechanism of Ganoderma lucidum spores, this study designs a scalable biomimetic Gemini‐structure solar‐powered evaporation system (SPCZH) for efficient and selective lithium extraction. The system comprises a three‐layer heterostructure: superhydrophobic photothermal aerogel layer (SPCP‐a), lithium‐selective ZIF‐8/PSS composite membrane (PZP), and superhydrophilic hydrogel layer (PCP‐h), achieving synergistic photothermal evaporation and ion sieving. Under 1 sun illumination, SPCZH achieves an evaporation rate of 2.98 kg m −2 h −1 with 93.79% energy efficiency. The 24 h lithium extraction capacity reaches 1353.5 mg·m −2 , demonstrating excellent Li⁺ selectivity. Outdoor experiments validate its dual capabilities of freshwater production and lithium enrichment in real‐world environments. This study provides a practical technical approach for the large‐scale, sustainable development of lithium resources using solar energy.
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