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Assembly of a core–shell MOF with stability into Polyacrylamide hydrogel for boosting extraction of uranium from seawater

Yucheng Song, Huanhuan Tan, Shiliang Qin, Zhong Liu, Chuntai Liu, Changyu Shen, Peipei Yang, Songwei Li

2023Nano Research49 citationsDOI

Abstract

Efficient and selective extraction of uranium (U(VI)) from seawater is essential for sustainable nuclear power production. This study reports a novel adsorbent zeolitic imidazolate framework (ZIF)-67@SiO 2 -A/polyacrylamide (PAM) which was synthesized by grafting the core–shell metal–organic frameworks (MOFs)-based nanostructures coated with the 3-aminopropyl triethoxysilane (APTES) functionalized SiO 2 (SiO 2 -A) onto PAM hydrogel. The SiO 2 shell was grown on the surface of MOF, which improved the acid-base resistance of MOF. The introduction of ZIF-67@SiO 2 -A enhances the specific surface area and adsorption efficiency of the PAM. The ZIF-67@SiO 2 -A/PAM shows remarkable adsorption capacity, fast adsorption kinetics, and good reusability for uranium. It has excellent adsorption property (6.33 mg·g −1 , 30 d) in natural seawater. The X-ray photoelectron spectroscopy (XPS), Fourier transform infrared (FTIR), energy dispersive spectroscopy (EDS) mappings, and density functional theory reveal that the coordination by N and O in ZIF-67@SiO 2 -A/PAM with uranium is the main mechanism of uranium adsorption. Thus, ZIF-67@SiO 2 -A/PAM has great potential to capture uranium from natural seawater.

Topics & Concepts

AdsorptionPolyacrylamideFourier transform infrared spectroscopyUraniumChemical engineeringX-ray photoelectron spectroscopyImidazolateSeawaterZeolitic imidazolate frameworkMaterials scienceMetal-organic frameworkExtraction (chemistry)ChemistryNuclear chemistryInorganic chemistryPolymer chemistryOrganic chemistryOceanographyMetallurgyGeologyEngineeringRadioactive element chemistry and processingChemical Synthesis and CharacterizationMetal-Organic Frameworks: Synthesis and Applications
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