材料科学
铀酰
海水淡化
海水
共价键
铀
纳米技术
化学工程
有机化学
冶金
工程类
膜
生物化学
海洋学
地质学
化学
作者
Wei‐Rong Cui,Cheng-Rong Zhang,Ru‐Ping Liang,Juewen Liu,Jian‐Ding Qiu
标识
DOI:10.1021/acsami.1c04419
摘要
Energy and fresh water are essential for the sustainable development of human society, and both could be obtained from seawater. Herein, we explored the first covalent organic framework (COF) sponge (named BHMS) by in situ loading the benzoxazole-linked COF (DBD-BTTH) onto a porous polymer scaffold (polydimethylsiloxane) as a synergistic platform for efficient solar desalination and selective uranium recovery. In natural seawater, BHMS shows a high evaporation rate (1.39 kg m–2 h–1) and an exceptional uranium recovery capacity (5.14 ± 0.15 mg g–1) under 1 sun, which are due to its desirable inbuilt structural hierarchy and elastic macroporous open cells providing adequate water transport, increased evaporation sites of seawater, and selective binding sites of uranyl. Besides, the excellent photothermal performance and photocatalytic activity endow the BHMS with high solar desalination efficiency and excellent anti-biofouling activity and promote selective coordination of uranyl.
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