The role of potassium atoms in the formation of uranyl selenates: the crystal structure and synthesis of two novel compounds

*Corr esponding author Single crystals of two new uranyl selenates K 3 (H 3 O)[(UO 2 ) 4 (SeO 4 ) 6 (H 2 O) 4 ]∙5H 2 O (I) and K 2.5 (NO 3 ) 0.5 [(UO 2 ) 2 (SeO 4 ) 3 (H 2 O)]∙4H 2 O (II) have been prepared by room-temperature evaporation from aqueous solution of uranyl nitrate, selenic acid, potassium carbonate and (for the compound I) carbamide. The crystal structure of I has been solved by direct methods [monoclinic, P2 1 /m, a = 12.001(3), b = 13.613(3), c = 13.753(3) A, β = 109.187(4)°, V = 2122.0(8) A 3 and Z = 2] and refined to R 1 = 0.029 (wR 2 = 0.084) for 4865 reflections with |F o| ≥ 4σF using least-square methods. The crystal structure of II has been solved by direct methods [monoclinic, С2/с, a = 20.290(4), b = 10.380(2), c = 21.436(4) A, β = 103.446(3)°, V = 4391.0(13) A 3 and Z = 4] and refined to R 1 = 0.027 (wR 2 = 0.066) for 7944 reflections with | F o | ≥ 4σF using least-square techniques. The structures of I and II are based upon the [(UO 2 ) 2 (SeO 4 ) 3 (H 2 O) 2 ] 2– and [(UO 2 ) 2 (SeO 4 ) 3 (H 2 O)] 2– layers, respectively, consisting of UO 7 pentagonal bipyramids sharing corners with SeO 4 tetrahedra. Potassium cations induce curvature of the uranyl selenate layers, which is mediated by the interlayer water molecules, hydronium ions and nitrate groups. The topology of the 2D units in the structure of I is novel for the structural chemistry of uranyl selenates.

[1]  W. Depmeier,et al.  Thermodynamics of arsenates, selenites, and sulfates in the oxidation zone of sulfide ores: V. Chalcomenite and its synthetic analog, properties, and formation conditions , 2012, Geology of Ore Deposits.

[2]  K. Semenov,et al.  Thermodynamics of arsenates, selenites, and sulfates in the oxidation zone of sulfide ores: VI. Solubility of synthetic analogs of ahlfeldite and cobaltomenite at 25°C , 2012, Geology of Ore Deposits.

[3]  S. Krivovichev,et al.  Nanoscale chemistry of uranyl selenates , 2011 .

[4]  V. Krivovichev,et al.  Thermodynamics of arsenates, selenites, and sulfates in the oxidation zone of sulfide ores: I. Thermodynamic constants at ambient conditions , 2010 .

[5]  Richard J. Gildea,et al.  OLEX2: a complete structure solution, refinement and analysis program , 2009 .

[6]  S. Krivovichev,et al.  A crown ether as template for microporous and nanostructured uranium compounds. , 2008, Angewandte Chemie.

[7]  Peter C. Burns,et al.  U6+ MINERALS AND INORGANIC COMPOUNDS: INSIGHTS INTO AN EXPANDED STRUCTURAL HIERARCHY OF CRYSTAL STRUCTURES , 2005 .

[8]  Dermot O'Hare,et al.  (C 8 H 26 N 4 ) 0.5 [(UO 2 ) 2 (SO 4 ) 3 (H 2 O)]·2H 2 O, an organically templated uranyl sulfate with a novel layer type , 2004 .

[9]  J. Čejka Infrared spectroscopy and thermal analysis of the uranyl minerals , 1999 .

[10]  R. Ewing,et al.  The crystal chemistry of hexavalent uranium; polyhedron geometries, bond-valence parameters, and polymerization of polyhedra , 1997 .