Four metal-organic frameworks (MOF) with tetravalent uranium have been solvothermally synthesized by treating UCl4 with rigid dicarboxylate linkers in N,N-dimethylfomamide (DMF). The use of the ditopic ligands 4,4'-biphenyldicarboxylate (1), 2,6-naphthalenedicarboxylate (2), terephthalate (3), and fumarate (4) resulted in the formation of three-dimensional networks based on the hexanuclear uranium-centered motif [U6O4(OH)4(H2O)6]. This motif corresponds to an octahedral configuration of uranium nodes and is also known for thorium in crystalline solids. The atomic arrangement of this specific building unit with organic linkers is similar to that found in the zirconium-based porous compounds of the UiO-66/67 series. The structure of [U6O4(OH)4(H2O)6(L)6]⋅X (L = dicarboxylate ligand; X = DMF) shows the inorganic hexamers connected in a face-centered cubic manner through the ditopic linkers to build up a three-dimensional framework that delimits octahedral (from 5.4 Å for 4 up to 14.0 Å for 1) and tetrahedral cavities. The four compounds have been characterized by using single-crystal X-ray diffraction analysis (or powder diffraction analysis for 4). The tetravalent state of uranium has been examined by using XPS and solid-state UV/Vis analyses. The measurement of the Brunauer-Emmett-Teller surface area indicated very low values (Langmuir <300 m(2) g(-1) for 1, <7 m(2) g(-1) for 2-4) and showed that the structures are quite unstable upon removal of the encapsulated DMF solvent.
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http://dx.doi.org/10.1002/chem.201203914 | DOI Listing |
J Toxicol Sci
December 2024
Institute for Radiological Science, National Institutes for Quantum Science and Technology.
A simple monitoring method has been proposed by measuring uranium (U) concentration and its chemical form in serum. The droplet of the 1 µL rat serum specimen was then examined by subjecting it to high energy synchrotron radiation X-ray fluorescence spectroscopy (SR-XRF) and X-ray absorption fine structure (XAFS) to determine the concentration and chemical form of U. The detection limit of U in 1 µL droplet was calculated to be 0.
View Article and Find Full Text PDFInorg Chem
November 2024
Laboratory of Nuclear Energy Chemistry, Institute of High Energy Physics, Chinese Academy of Sciences, Beijing 100049, China.
New kinds of crystalline waste forms with improved structural stability are desirable for actinide immobilization. In this work, using a molten salt method, two uranium(IV) germanate compounds, namely, KUGeO () and KUGeO (), were synthesized, whose compositions consisted of trimeric and dimeric units of germanate, as well as tetravalent uranium, as proved by bond valence calculation and X-ray absorption spectra. Radiation stability assessment is further performed by γ-irradiation to assess the potential of as-synthesized uranium germanate compounds as nuclear waste forms.
View Article and Find Full Text PDFInorg Chem
October 2024
Department of Chemistry and Chemical Biology, McMaster University, Hamilton, Ontario L8S 4M1, Canada.
Reactions of the rigid thioether- and selenoether-containing ligand salts [{Li(AE)}] (E = S or Se; AE = 4,5-bis(phenylchalcogenido)-2,7,9,9-tetramethylacridanide) with ThCl(dme) or UCl (for E = Se) afforded the actinide chalcogenoether complexes [(AE)ThCl] (E = S (), Se ()), and [(ASe)UCl] (). X-ray crystal structures of - revealed tetravalent actinide cations complexed to two κ-coordinated AE ligands, with Th-ER and U-ER distances below the sum of the covalent radii. Complexes - provide extremely rare examples of thorium-thioether, thorium-selenoether, and uranium-selenoether bonds, and and contain the shortest known Th-SR and Th-SeR distances.
View Article and Find Full Text PDFInorg Chem
September 2024
Zhejiang Key Laboratory of Data-Driven High-Safety Energy Materials and Applications, Ningbo Key Laboratory of Special Energy Materials and Chemistry, Ningbo Institute of Materials Technology and Engineering, Chinese Academy of Sciences, Ningbo 315201, China.
Two novel uranium(IV) orthophosphate framework compounds were obtained by the high-temperature flux method in CsCl-CsF eutectic salt. CsU(PO) () and isostructural Cs(UCe)(PO) () are tetragonal structures bridged by (U/Ce)-O octacoordinated dodecahedra and PO tetrahedra, with Cs cations filling in the channels. The crystal structures exhibit good structural and thermal stability with a potential capacity to immobilize tetravalent radionuclides.
View Article and Find Full Text PDFDalton Trans
August 2024
ICSM, Univ Montpellier, CEA, CNRS, ENSCM, Bagnols/Cèze, France.
Hydrothermal conversion of actinide oxalates has recently gained attention as an innovative fabrication route for nuclear fuels but has remained mainly limited to tetra- or tri-valent cations. We report herein the reductive conversion of mixtures of uranyl and oxalate ions into UO oxides under mild hydrothermal conditions ( = 250 °C). A multi-parametric study first led to specifying the optimal conditions in terms of pH, oxalate/U ratio and duration to provide a quantitative precipitation of uranium in the hyper-stoichiometric dioxide form with pH = 0.
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