Water-stable 2-D Zr MOFs with exceptional UO22+ sorption capability
Date
2019-12-02Author
Panagiotou, NikosLiatsou, Ioanna
Pournara, Anastasia
Angeli, Giasemi K.
Giappa, Rafaela Maria
Tylianakis, Emmanuel
Manos, Manolis J.
Froudakis, George E.
Trikalitis, Pantelis N.
Pashalidis, Ioannis
Tasiopoulos, Anastasios J.
ISSN
2050-7488Publisher
Royal Society of ChemistryPlace of publication
Cambridge, UKSource
Journal of materials chemistry AVolume
8Issue
4Pages
1849-1857Google Scholar check
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Two new 8-connected 2-D MOFs, UCY-13 and UCY-14, based on Zr6 secondary building units (SBUs) and angular dicarboxylate ligands are reported. UCY-13 and UCY-14 display remarkable stability in various types of aqueous media, an appreciable internal surface area of 925 m2 g-1 and 678 m2 g-1, respectively, and are the first examples of 2-D MOFs investigated for their uranyl sorption capability. They exhibit exceptional UO22+ sorption capacities of 984 mg g-1 for UCY-13 and 471 mg g-1 for UCY-14 and the ability to sorb UO22+ from various types of real-world aqueous media. Both sorbents were proven to immobilize UO22+ ions, thus being unique examples of MOFs that can be potentially employed as barrier materials for environmental application. Their exceptional sorption properties are attributed to the 2-D nature and structural features directly derived from it such as the presence of several easily accessible coordination sites in the Zr6 SBUs. This journal is © The Royal Society of Chemistry.
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