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An imidazole-based covalent-organic framework enabling a super-efficiency in sunlight-driven uranium extraction from seawater.


ABSTRACT: Uranium extraction from seawater represents an effective way to solve the difficulty of the insufficient uranium supply chain. However, this route is still restricted by the low extraction efficiency of reported adsorbents. Here, we find that reversing the donor-acceptor in imidazole-based COFs (covalent-organic frameworks) would be effective for enhancing the extraction efficiency of uranium. As a result, the TI-COF is found to enable a uranium extraction efficiency up to 8.8 mg g-1 day-1 from seawater under visible light irradiation, exceeding all established adsorbents for such use, and an unprecedented uranium extraction efficiency up to 6.9 mg g-1 day-1 from seawater under natural sunlight.

SUBMITTER: Zhong L 

PROVIDER: S-EPMC11253174 | biostudies-literature | 2024 Jul

REPOSITORIES: biostudies-literature

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An imidazole-based covalent-organic framework enabling a super-efficiency in sunlight-driven uranium extraction from seawater.

Zhong Lizhen L   Feng Xuefeng X   Zhang Qingyun Q   Xie Xianqing X   Luo Feng F  

Chemical science 20240607 28


Uranium extraction from seawater represents an effective way to solve the difficulty of the insufficient uranium supply chain. However, this route is still restricted by the low extraction efficiency of reported adsorbents. Here, we find that reversing the donor-acceptor in imidazole-based COFs (covalent-organic frameworks) would be effective for enhancing the extraction efficiency of uranium. As a result, the TI-COF is found to enable a uranium extraction efficiency up to 8.8 mg g<sup>-1</sup>  ...[more]

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