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Redetermination of metarossite, CaV5+2O6·2H2O.


ABSTRACT: The crystal structure of metarossite, ideally CaV2O6·2H2O [chemical name: calcium divanadium(V) hexa-oxide dihydrate], was first determined using precession photographs, with fixed isotropic displacement parameters and without locating the positions of the H atoms, leading to a reliability factor R = 0.11 [Kelsey & Barnes (1960 ?). Can. Mineral.6, 448-466]. This communication reports a structure redetermination of this mineral on the basis of single-crystal X-ray diffraction data of a natural sample from the Blue Cap mine, San Juan County, Utah, USA (R1 = 0.036). Our study not only confirms the structural topology reported in the previous study, but also makes possible the refinement of all non-H atoms with anisotropic displacement parameters and all H atoms located. The metarossite structure is characterized by chains of edge-sharing [CaO8] polyhedra parallel to [100] that are themselves connected by chains of alternating [VO5] trigonal bipyramids parallel to [010]. The two H2O mol-ecules are bonded to Ca. Analysis of the displacement parameters show that the [VO5] chains librate around [010]. In addition, we measured the Raman spectrum of metarossite and compared it with IR and Raman data previously reported. Moreover, heating of metarossite led to a loss of water, which results in a transformation to the brannerite-type structure, CaV2O6, implying a possible dehydration pathway for the compounds M2+V2O6·xH2O, with M = Cu, Cd, Mg or Mn, and x = 2 or 4.

SUBMITTER: Kobsch A 

PROVIDER: S-EPMC5120707 | biostudies-other | 2016 Sep

REPOSITORIES: biostudies-other

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Redetermination of metarossite, CaV<sup>5+</sup><sub>2</sub>O<sub>6</sub>·2H<sub>2</sub>O.

Kobsch Anaïs A   Downs Robert T RT   Domanik Kenneth J KJ  

Acta crystallographica. Section E, Crystallographic communications 20160809 Pt 9


The crystal structure of metarossite, ideally CaV<sub>2</sub>O<sub>6</sub>·2H<sub>2</sub>O [chemical name: calcium divanadium(V) hexa-oxide dihydrate], was first determined using precession photographs, with fixed isotropic displacement parameters and without locating the positions of the H atoms, leading to a reliability factor <i>R</i> = 0.11 [Kelsey & Barnes (1960 ▸). <i>Can. Mineral.</i><b>6</b>, 448-466]. This communication reports a structure redetermination of this mineral on the basis of  ...[more]

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