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首页> 外文期刊>Scientific reports. >Adsorption of Uranyl ions on Amine-functionalization of MIL-101(Cr) Nanoparticles by a Facile Coordination-based Post-synthetic strategy and X-ray Absorption Spectroscopy Studies
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Adsorption of Uranyl ions on Amine-functionalization of MIL-101(Cr) Nanoparticles by a Facile Coordination-based Post-synthetic strategy and X-ray Absorption Spectroscopy Studies

机译:通过基于体配位的合成后策略和X射线吸收光谱研究对MIL-101(Cr)纳米粒子胺官能化的铀酰离子的吸附

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By a facile coordination-based post-synthetic strategy, the high surface area MIL-101(Cr) nanoparticles was functionallized by grafting amine group of ethylenediamine (ED) on coordinatively unsaturated Cr(III) centers, yielding a series of ED-MIL-101(Cr)-based adsorbents and their application for adsorption of U(VI) from aqueous solution were also studied. The obtained ED-functionallized samples with different ED contents were characterized by powder X-ray diffraction (PXRD), scanning electron microscope (SEM), energy dispersive X-ray spectroscopy (EDX), FTIR, elemental analysis (EA) and N2 adsorption and desorption isothermal. Compared with the pristine MIL-101(Cr) sorbents, the ED-functionallized MIL-101(Cr) exhibits significantly higher adsorption capacity for U(VI) ions from water with maximum adsorption capacities as high as 200?mg/g (corresponding to 100% extraction rate) at pH of 4.5 with ED/Cr ratio of 0.68 and the sorbed U(VI) ions can easily be desorbed at lower pH (pH?≤?2.0). The adsorption mode of U(VI) ions and effects of grafted ED on the MIL-101(Cr) frameworks were also been studied by X-ray absorption spectroscopy (XAS). We believe that this work establishes a simple and energy efficient route to a novel type of functional materials for U(VI) ions extraction from solution via the post-synthetic modification (PSM) strategy.
机译:通过基于容纳的合成后策略,通过在协调不饱和Cr(III)中心的乙二胺(ED)嫁接胺基乙二胺基团(ED),产生一系列ED-MIL-的高表面积MIL-101(CR)纳米颗粒。还研究了基于101(Cr)的吸附剂及其用于从水溶液中吸附U(VI)的应用。通过粉末X射线衍射(PXRD),扫描电子显微镜(SEM),能量分散X射线光谱(EDX),FTIR,元素分析(EA)和N 2 吸附和解吸等温。与原始MIL-101(CR)吸附剂相比,ED-Functionallized MIL-101(CR)对来自水的u(VI)离子的吸附容量显着较高,具有高达200μmg/ g的最大吸附容量(对应于100%的提取率为4.5的NE / Cr比为0.68和吸附的U(VI)离子在较低pH(pH≤≤1.2.0)中可以容易地解吸。还研究了X射线吸收光谱(XAs)研究了U(VI)离子和接枝ED在MIL-101(CR)框架上的效果的吸附模式。我们认为,这项工作通过合成后修饰(PSM)策略来建立了一种简单且节能的途径,用于U(VI)离子从溶液中提取溶液的新型功能材料。

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