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一种用于铀的同步吸附和检测的锌金属有机骨架。

A Zinc Metal-Organic Framework for Concurrent Adsorption and Detection of Uranium.

机构信息

Key Laboratory of Advanced Materials of Tropical Island Resources, Ministry of Education, School of Science, Hainan University, Haikou 570228, China.

Department of Clinical Laboratory, Xiamen Huli Guoyu Clinic, Xiamen 361000, China.

出版信息

Inorg Chem. 2020 Jul 20;59(14):9857-9865. doi: 10.1021/acs.inorgchem.0c01072. Epub 2020 Jun 26.

Abstract

Uranium is one of the principal raw materials in the nuclear industry, but if released into the natural environment, it also poses latent health risks to mankind. Therefore, there is an urgent need to develop a strategy that can concurrently detect and adsorb uranium to realize the sustainable development of nuclear power and protect the environment. In this work, a fluorescent zinc-based metal-organic framework () was designed and synthesized for the effective detection and extraction of U(VI). The amide groups on -pyridin-4-ylpyridine-4-carboxamide ligands and two uncoordinated carboxyl oxygen atoms on pyromellitic acid ligands in provide potential uranium-binding sites. Consequently, is competent of selectively and efficiently catching uranyl ions, achieving an optimum adsorption capacity of 632 mg/g. Additionally, the adsorption of U(VI) results in fluorescence quenching of , thus allowing sensitive and selective detection of U(VI) by fluorescence change. Note that exhibits a considerably low detection limit of 1.2 × 10 M for U(VI) in aqueous solution, which is below the World Health Organization maximum pollution standards for potable water (6.3 × 10 M).

摘要

铀是核工业的主要原材料之一,但如果释放到自然环境中,也会对人类健康构成潜在威胁。因此,迫切需要开发一种能够同时检测和吸附铀的策略,以实现核能的可持续发展和环境保护。在这项工作中,设计并合成了一种荧光锌基金属有机骨架(),用于有效检测和提取 U(VI)。-吡啶-4-基吡啶-4-甲酰胺配体上的酰胺基团和均苯三甲酸配体上的两个未配位的羧基氧原子为提供了潜在的铀结合位点。因此,能够选择性和有效地捕获铀酰离子,达到 632mg/g 的最佳吸附容量。此外,U(VI)的吸附导致的荧光猝灭,因此可以通过荧光变化来灵敏和选择性地检测 U(VI)。值得注意的是,在水溶液中对 U(VI)的检测限低至 1.2×10 M,低于世界卫生组织饮用水的最大污染标准(6.3×10 M)。

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