JOURNAL ARTICLE

Geometrical isomerism in uranyl chromates II. Crystal structures of Mg2[(UO2)3(CrO4)5](H2O)17 and Ca2[(UO2)3(CrO4)5](H2O)19

Sergey V. KrivovichevPeter C. Burns

Year: 2003 Journal:   Zeitschrift für Kristallographie - Crystalline Materials Vol: 218 (10)Pages: 683-690   Publisher: De Gruyter

Abstract

Abstract Geometrical isomerism of uranyl chromate sheets occurs in the structures of Mg 2 [(UO 2 ) 3 (CrO 4 ) 5 ](H 2 O) 17 and Ca 2 [(UO 2 ) 3 (CrO 4 ) 5 ](H 2 O) 19 . Both compounds were prepared by evaporation from aqueous solutions. Compound 1 is orthorhombic, Pbca , a = 19.9206(10), b = 21.0526(10), c = 18.4966(9) Å, V = 7757.1(7) Å 3 ; R 1 = 0.050 for 6332 unique reflections with | F o | ≥ 4 σ F . Compound 2 is monoclinic, P 2 1 / m , a = 11.0359(5), b = 17.5364(7), c = 11.5056(5) Å, β = 118.178(1)°, V = 1962.8(2) Å 3 ; R 1 = 0.037 for 6209 unique reflections with | F o | = 4 σ F . Both structures contain sheets of composition [(UO 2 ) 3 (CrO 4 ) 5 ] involving corner-sharing UO 7 pentagonal bipyramids and CrO 4 tetrahedra. The sheets are parallel to (100) in both structures. Mg 2+ and Ca 2+ cations are coordinated by H 2 O molecules and are located in the interlayer. The topology of the [(UO 2 ) 3 (CrO 4 ) 5 ] sheets in both structures is the same, whereas their geometrical structures are different, and they are geometrical isomers. The sheets differ in the orientations of non-shared corners of chromate tetrahedra relative to the plane of the sheet. In order to describe the geometrical structure of the isomers, the concept of orientation matrix of tetrahedra is introduced. It has been shown that there are at least three geometrical isomers of the [(UO 2 ) 3 (CrO 4 ) 5 ] sheet in uranyl chromates that differ in their orientation matrices of the tetrahedra.

Keywords:
Uranyl Orthorhombic crystal system Crystallography Monoclinic crystal system Crystal structure Chemistry Chromate conversion coating Molecule Tetrahedron Aqueous solution Materials science Uranium Physical chemistry Chromium Metallurgy

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Topics

Radioactive element chemistry and processing
Physical Sciences →  Chemistry →  Inorganic Chemistry
Crystal Structures and Properties
Physical Sciences →  Materials Science →  Electronic, Optical and Magnetic Materials
Lanthanide and Transition Metal Complexes
Physical Sciences →  Materials Science →  Materials Chemistry
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