铀
共价键
检出限
萃取(化学)
共价有机骨架
吸附
荧光
三嗪
化学
组合化学
共轭体系
材料科学
色谱法
有机化学
聚合物
物理
冶金
量子力学
作者
Wei‐Rong Cui,Cheng-Rong Zhang,Wei Jiang,Fangfang Li,Ru‐Ping Liang,Juewen Liu,Jian‐Ding Qiu
标识
DOI:10.1038/s41467-020-14289-x
摘要
Abstract Uranium is a key element in the nuclear industry, but its unintended leakage has caused health and environmental concerns. Here we report a sp 2 carbon-conjugated fluorescent covalent organic framework (COF) named TFPT-BTAN-AO with excellent chemical, thermal and radiation stability is synthesized by integrating triazine-based building blocks with amidoxime-substituted linkers. TFPT-BTAN-AO shows an exceptional UO 2 2+ adsorption capacity of 427 mg g −1 attributable to the abundant selective uranium-binding groups on the highly accessible pore walls of open 1D channels. In addition, it has an ultra-fast response time (2 s) and an ultra-low detection limit of 6.7 nM UO 2 2+ suitable for on-site and real-time monitoring of UO 2 2+ , allowing not only extraction but also monitoring the quality of the extracted water. This study demonstrates great potential of fluorescent COFs for radionuclide detection and extraction. By rational designing target ligands, this strategy can be extended to the detection and extraction of other contaminants.
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