Peng Yaguang, Zhang Yuxi, Tan Qiang, Huang Hongliang
Department of Chemistry, Tsinghua University, Beijing 100084, China.
State Key Laboratory of Organic-Inorganic Composites, Beijing University of Chemical Technology, Beijing 100029, China.
ACS Appl Mater Interfaces. 2021 Jun 16;13(23):27049-27056. doi: 10.1021/acsami.1c04892. Epub 2021 Jun 2.
Highly efficient extraction of radioactive uranium from aqueous solution remains a serious task in the nuclear energy field. To address this, we here create an effective uranium ion trap by using a novel and facile strategy that introduces bioinspired moiety phytic acid (PA) into highly robust PCN-222. The resultant metal-organic framework (MOF)-based uranium ion trap (PCN-222-PA) with a high density of accessible phosphate groups exhibits a remarkable U(VI) uptake capacity (401.6 mg·g), surpassing most of the reported phosphorus-modified MOFs and various other MOF adsorbents. Kinetics study reveals that PCN-222-PA can reduce the uranium concentration from 10 mg L to 21 μg L, below the acceptable limit defined by the US Environmental Protection Agency. In addition, PCN-222-PA also shows good selectivity and high stability as well as excellent recyclability toward uranium capture. Our work demonstrates a new strategy to design functional MOFs with abundant phosphate groups and provides a new perspective for extracting uranium from aqueous solution.
从水溶液中高效提取放射性铀仍然是核能领域的一项艰巨任务。为了解决这一问题,我们在此采用一种新颖且简便的策略,将受生物启发的部分植酸(PA)引入高度稳定的PCN - 222中,从而创建了一种有效的铀离子阱。所得的基于金属有机框架(MOF)的铀离子阱(PCN - 222 - PA)具有高密度的可及磷酸基团,展现出卓越的U(VI)吸附容量(401.6 mg·g),超过了大多数已报道的磷改性MOF以及其他各种MOF吸附剂。动力学研究表明,PCN - 222 - PA能够将铀浓度从10 mg/L降低至21 μg/L,低于美国环境保护局规定的可接受限度。此外,PCN - 222 - PA在铀捕获方面还表现出良好的选择性、高稳定性以及出色的可回收性。我们的工作展示了一种设计具有丰富磷酸基团的功能性MOF的新策略,并为从水溶液中提取铀提供了新的视角。