PRESSURE-INDUCED PHASE TRANSITION IN SYNTHETIC TRIOCTAHEDRAL RB-MICA

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dc.contributor.author Comodi P.
dc.contributor.author Drabek M.
dc.contributor.author Montagnoli M.
dc.contributor.author Rieder M.
dc.contributor.author Weiss Z.
dc.contributor.author Zanazzi P.F.
dc.date.accessioned 2022-02-13T04:46:04Z
dc.date.available 2022-02-13T04:46:04Z
dc.date.issued 2003
dc.identifier https://elibrary.ru/item.asp?id=5088771
dc.identifier.citation Physics and Chemistry of Minerals, 2003, 30, 4, 198-205
dc.identifier.issn 0342-1791
dc.identifier.uri https://repository.geologyscience.ru/handle/123456789/35248
dc.description.abstract The crystal structure of a synthetic Rb analog of tetra-ferri-annite (Rb-TFA) 1M with the composition Rb0.99Fe2+3.03(Fe3+ 1.04 Si2.96)O10.0(OH)2.0 was determined by the single-crystal X-ray diffraction method. The structure is homooctahedral (space group C2/m) with M1 and M2 occupied by divalent iron. Its unit cell is larger than that of the common potassium trioctahedral mica, and similar lateral dimensions of the tetrahedral and octahedral sheets allow a small tetrahedral rotation angle α=2.23(6)°. Structure refinements at 0.0001, 1.76, 2.81, 4.75, and 7.2 GPa indicate that in some respects the Rb-TFA behaves like all other micas when pressure increases: the octahedra are more compressible than the tetrahedra and the interlayer is four times more compressible than the 2:1 layer. However, there is a peculiar behavior of the tetrahedral rotation angle α: at lower pressures (0.0001, 1.76, 2.81 GPa), it has positive values that increase with pressure [from 2.23(6)° to 6.3(4)°] as in other micas, but negative values -7.5(5)° and -8.5(9)° appear at higher pressures, 4.75 and 7.2 GPa, respectively. This structural evidence, together with electrostatic energy calculations, shows that Rb-TFA has a Franzini A-type 2:1 layer up to at least 2.81 GPa that at higher pressure yields to a Franzini B-type layer, as shown by the refinements at 4.75 and 7.2 GPa. The inversion of the α angle is interpreted as a consequence of an isosymmetric displacive phase transition from A-type to B-type structure between 2.81 and 4.75 GPa. The compressibility of the Rb-TFA was also investigated by single-crystal X-ray diffraction up to a maximum pressure of 10 GPa. The lattice parameters reveal a sharp discontinuity between 3.36 and 3.84 GPa, which was associated with the phase transition from Franzini-A to Franzini-B structure.
dc.subject MICA
dc.subject CRYSTAL STRUCTURE
dc.subject COMPRESSIBILITY
dc.subject PRESSURE
dc.subject PHASE TRANSITION
dc.subject X-RAY DIFFRACTION
dc.title PRESSURE-INDUCED PHASE TRANSITION IN SYNTHETIC TRIOCTAHEDRAL RB-MICA
dc.type Статья


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