Alkaline earth metal ions play an important role in the formation of secondary uranium minerals due to their abundance in the Earth's crust. Although uranium oxide hydrate (UOH) minerals and synthetic phases with calcium, strontium and barium ions have been investigated, their counterparts with magnesium ions are much less studied. In this work, synthetic UOH materials with magnesium ions have been investigated with three new compounds being synthesised and characterised. Compound Mg(HO)(HO)[(UO)O(OH)] (U-Mg1 with a U : Mg ratio of 3 : 1) crystallises in the monoclinic 2/ space group having a layered crystal structure, constructed by β-UO layers with 6-fold coordinated Mg ions as interlayer cations. Compound NaMg(HO)[(UO)O(OH)] (U-Mg2p with U : Mg : Na ratios of 6 : 1 : 2) crystallises in the triclinic 1̄ space group having a layered structure, constructed by a unique type of uranium oxide hydroxide layer containing both α-UO and β-UO features, with alternating layers of 6-fold coordinated Mg and 6-/8-fold coordinated Na interlayer cations. Compound NaMg(HO)[(UO)O(OH)] (U-Mg2n with U : Mg : Na ratios of 8 : 1 : 2) crystallises in the triclinic 1̄ space group having a corrugated layer structure, constructed by a unique type of uranium oxide hydroxide layer with mixed 6-fold coordinated Mg and 7-fold coordinated Na interlayer cations. The structural diversity in the UOH-Mg system was achieved by adjusting the solution pH using NaOH, highlighting the importance of solution pH control and the additional Na ions in the formation of UOH phases. The extra structural flexibility offered by the Na ions emphasizes the opportunity for synthesising UOHs with dual-cations to further improve our understanding of the alteration products of spent nuclear fuel under geological disposal.
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http://dx.doi.org/10.1039/d3dt03078d | DOI Listing |
J Chem Phys
January 2025
CEA, Service de recherche en Corrosion et Comportement des Matériaux, SRMP, Université Paris-Saclay, Gif sur Yvette F-91191, France.
We present the work-biased path-sampling scheme to calculate chemical potentials in atomic scale simulations. This scheme is based on a series of chained insertion and deletion paths from N to N + 1 to N atom systems, the sampling being performed on the paths themselves rather than on the final configurations. Equations for parallel path generations as well as geometrically biased insertions or deletions are presented.
View Article and Find Full Text PDFJ Phys Condens Matter
September 2024
Department of Chemistry, University of California, Irvine, Irvine, CA, 92697, United States of America.
In a recent manuscript, Lawrence Bright(2023175501) reported the resonant inelastic x-ray scattering spectra of UO, as well as UN. Their goal was to identify electronic multiplets associated with a 5configuration with ground state2F5/2. Complete active space self-consistent field with spin-orbit coupling (CASSCF-SOC) predicted that2F5/2transitions should be observable at 190 and 328 meV.
View Article and Find Full Text PDFACS Omega
September 2024
Australian Nuclear Science and Technology Organisation, Locked Bag 2001, Kirrawee, New South Wales 2232, Australia.
The synthesis of two zinc-bearing uranium oxide hydrate (UOH) materials has been achieved, and their crystal structures, obtained via single-crystal X-ray diffraction using synchrotron radiation, and additional structural and spectroscopic properties are reported herein. Although both structures incorporate Zn cations, the two differ significantly. The compound Zn(OH)(HO)[(UO)UO(HO)] (), forming a framework-type structure in the 1̅ space group, was composed of β-UO layers pillared by uranyl polyhedra, with the Zn cations incorporated within the framework channels.
View Article and Find Full Text PDFUnderstanding the atomic structures and dynamic evolution of uranium oxides is crucial for the reliable operation of fission reactors. Among them, UO-as an important intermediate in the oxidation of UO to UO -plays an important role in the nucleation and conversion of uranium oxides. Herein, we realize the confined assembly of uranyl within SWCNTs in liquid phase and reveal the directional growth and reconstruction of UO nanorods in nanochannels, enabled by scanning transmission electron microscopy (STEM) e-beam stimulation.
View Article and Find Full Text PDFInorg Chem
August 2024
School of Chemistry, The University of Sydney, Sydney, NSW 2006, Australia.
The structures and high-temperature phase transition of CaUNbO were studied in situ using synchrotron X-ray and neutron powder diffraction. Rietveld refinements provided an accurate description of the crystal structures of both the monoclinic fergusonite-type 2/ structure observed at room temperature and the tetragonal scheelite-type 4/ structure found at high temperatures. Bond valence sum analysis showed Nb to be octahedrally coordinated in the monoclinic fergusonite-type structure, akin to other NbO materials.
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