Published January 2012 | Version v1
Journal article

Uranyl and/or rare-earth mellitates in extended organic-inorganic networks: A unique case of hetero-metallic cation-cation interaction with U-VI=O-Ln(III) bonding (Ln = Ce, Nd)

  • 1. Unite de Catalyse et Chimie du Solide (UCCS) - UMR CNRS 8181, Universite de Lille Nord de France, USTL-ENSCL, Bat C7, BP 90108, 59652 Villeneuve d'Ascq, (France)
  • 2. Laboratoire de Chimie et Conversion des Actinides, CEA, DEN/DRCP/SCPS, Bat. 399, BP17171, 30208 Bagnols sur Ceze cedex, (France)

Description

A series of uranyl and lanthanide (trivalent Ce, Nd) mellitates (mel) has been hydrothermally synthesized in aqueous solvent. Mixtures of these 4f and 5f elements also revealed the formation of a rare case of lanthanide-uranyl coordination polymers. Their structures, determined by XRD single-crystal analysis, exhibit three distinct architectures. The pure lanthanide mellitate Ln2(H2O)6(mel) possesses a 3D framework built up from the connection of isolated LnO6(H2O)3 polyhedra (tri-capped trigonal prism) through the mellitate ligand. The structure of the uranyl mellitate (UO2)3(H2O)6- (mel).11.5H2O is lamellar and consists of 8-fold coordinated uranium atoms linked to each other through the organic ligand giving rise to the formation of a 2D 36 net. The third structural type, (UO2)2Ln(OH)(H2O)3(mel).2.5H2O, involves direct oxygen bondings between the lanthanide and uranyl centers, with the isolation of a hetero-metallic dinuclear motif. The 9-fold coordinated Ln cation, LnO5(OH)(H2O)3, is linked to the 7-fold coordinated uranyl (UO2)O-4(OH) (pentagonal bipyramid) via one μ2-hydroxo group and one μ2-oxo group. The latter is shared between the uranyl bonding (U=O = 1.777(4)1.779(6) angstrom) and a long Ln-O bonding (Ce-O = 2.822(4) angstrom; Nd-O = 2.792(6) angstrom). This unusual linkage is a unique illustration of the so-called cation cation interaction associating 4f and 5f metals. The dinuclear motif is then further connected through the mellitate ligand, and this generates organic inorganic layers that are linked to each other via discrete uranyl (UO2)O4 units (square bipyramid), which ensure the three-dimensional cohesion of the structure. The mixed U-Ln carboxylate is thermally decomposed from 260 to 280 degrees C and then transformed into the basic uranium oxide (U3O8) together with U-Ln oxide with the fluorite structural type ('(Ln,U)O2'). At 1400 degrees C, only fluorite type '(Ln,U)O2' is formed with the measured stoichiometry of U0.63Ce0.37O2 and U0.60Nd0.40O2-δ. (authors)

Availability note (English)

Available from doi: http://dx.doi.org/10.1021/ja209915n

Additional details

Identifiers

Publishing Information

Journal Title
Journal of the American Chemical Society
Journal Volume
134
Journal Issue
no.2
Journal Page Range
p. 1275-1283
ISSN
0002-7863

Optional Information

Notes
30 refs.