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香豆素改性微孔-介孔 Zn-MOF-74 表现出超高的 U(VI)离子吸附容量和光开关式存储/释放性能。

Coumarin-modified microporous-mesoporous Zn-MOF-74 showing ultra-high uptake capacity and photo-switched storage/release of U(VI) ions.

机构信息

State Key Laboratory for Nuclear Resources and Environment, and School of Biology, Chemistry and Material Science, East China University of Technology, Nanchang, Jiangxi 344000, China.

State Key Laboratory for Nuclear Resources and Environment, and School of Biology, Chemistry and Material Science, East China University of Technology, Nanchang, Jiangxi 344000, China.

出版信息

J Hazard Mater. 2016 Jul 5;311:30-6. doi: 10.1016/j.jhazmat.2016.01.082. Epub 2016 Mar 2.

Abstract

Driven by an energy crisis but consequently puzzled by various environmental problems, uranium, as the basic material of nuclear energy, is now receiving extensive attentions. In contrast to numerous sorbents applied in this field, metal-organic framework (MOFs), as a renovated material platform, has only recently been developed. How to improve the adsorption capacity of MOF materials towards U(VI) ions, as well as taking advantage of the nature of these MOFs to design photo-switched behaviour for photo-triggered storage/release of U(VI) ions are at present urgent problems and great challenges to be solved. Herein, we show a simple and facile method to target the goal. Through coordination-based post-synthetic strategy, microporous- mesoporous Zn-MOF-74 was easily functionalized by grafting coumarin on coordinatively unsaturated Zn(II) centers, yielding a series of coumarin-modified Zn-MOF-74 materials. The obtained samples displayed ultra-high adsorption capacity for U(VI) ions from water at pH value of 4 with maximum adsorption capacities as high as 360 mg/g (the record value in MOFs) and a remarkable photo-switched capability of 50 mg/g at pH value of 4. To the best of knowledge, and in contrast to the well-known photo-switched behaviour towards CO2, dye (propidium iodide), as well as fluorescence observed in MOFs, this is the first study that shows a photo-switched behaviour towards radioactive U(VI) ions in aqueous solution.

摘要

受能源危机的驱动,但同时又被各种环境问题所困扰,铀作为核能的基本材料,现在受到了广泛的关注。与该领域中应用的众多吸附剂相比,金属-有机骨架(MOFs)作为一种新型材料平台,直到最近才得到发展。如何提高 MOF 材料对 U(VI)离子的吸附能力,以及利用这些 MOFs 的性质设计光触发的 U(VI)离子存储/释放的光开关行为,是当前亟待解决的问题和巨大挑战。在此,我们展示了一种简单易行的方法来实现这一目标。通过基于配位的后合成策略,容易地在配位不饱和的 Zn(II)中心上接枝香豆素,将微孔-介孔 Zn-MOF-74 功能化,得到一系列香豆素修饰的 Zn-MOF-74 材料。所得到的样品在 pH 值为 4 的水中对 U(VI)离子表现出超高的吸附容量,最大吸附容量高达 360 mg/g(MOFs 中的记录值),并且在 pH 值为 4 时具有显著的光开关能力,为 50 mg/g。据我们所知,与众所周知的对 CO2、染料(碘化丙啶)以及 MOFs 中观察到的荧光的光开关行为相比,这是首次在水溶液中显示出对放射性 U(VI)离子的光开关行为的研究。

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