A crystal-chemical investigation of vauxite, ideally FeAl2(PO4)(2)(OH)(2)6H(2)O, front Llallagua (Bolivia) has been performed using a multi-methodological approach based on WDS-electron microprobe, single-crystal X-ray diffraction, and vibrational spectroscopies (Raman and FTIR). The structure was refined in the triclinic P (1) over bar space group, with the following mat-cell constants: a 9.1276(2), 11.5836(3), c 6.15960(10) angstrom, alpha 98 152(10)degrees beta 92.0139(10)degrees, gamma 1081 695(9)degrees, and V 610.05(2) angstrom(3). The vauxite structure is based on a building unit oriented parallel to the c axis and composed of a chain of Fe2 and Al2 edge sharing octahedra and two chains of corner-sharing P2 tetrahedra and All octahedra, interconnected via corners and P1 tetrahedra. Neighboring building units are interconnected by Al3 octahedra and via Fel octahedra. The framework is completed with two non-coordinated water molecules. The latter, together with the two hydroxyl groups and the other four coordinated water molecules, form a complex hydrogen bonding network whose interactions further compact the whole framework. Both FTIR and Raman spectra show, in the H(2)Oretching region, a broad absorption consisting of several overlapping components due to the six water molecules plus the OH groups. The band multiplicity observed in the low-wavenumber region (<1400 cm(-1)) is compatible with the presence of two distorted PO4 tetrahedra.

STRUCTURE REFINEMENT AND VIBRATIONAL SPECTROSCOPY OF VAUXITE FROM THE TYPE LOCALITY, LLALLAGUA (BOLIVIA)

Cuocci Corrado;Capitelli Francesco
2016

Abstract

A crystal-chemical investigation of vauxite, ideally FeAl2(PO4)(2)(OH)(2)6H(2)O, front Llallagua (Bolivia) has been performed using a multi-methodological approach based on WDS-electron microprobe, single-crystal X-ray diffraction, and vibrational spectroscopies (Raman and FTIR). The structure was refined in the triclinic P (1) over bar space group, with the following mat-cell constants: a 9.1276(2), 11.5836(3), c 6.15960(10) angstrom, alpha 98 152(10)degrees beta 92.0139(10)degrees, gamma 1081 695(9)degrees, and V 610.05(2) angstrom(3). The vauxite structure is based on a building unit oriented parallel to the c axis and composed of a chain of Fe2 and Al2 edge sharing octahedra and two chains of corner-sharing P2 tetrahedra and All octahedra, interconnected via corners and P1 tetrahedra. Neighboring building units are interconnected by Al3 octahedra and via Fel octahedra. The framework is completed with two non-coordinated water molecules. The latter, together with the two hydroxyl groups and the other four coordinated water molecules, form a complex hydrogen bonding network whose interactions further compact the whole framework. Both FTIR and Raman spectra show, in the H(2)Oretching region, a broad absorption consisting of several overlapping components due to the six water molecules plus the OH groups. The band multiplicity observed in the low-wavenumber region (<1400 cm(-1)) is compatible with the presence of two distorted PO4 tetrahedra.
2016
vauxite
phosphate
EMPA
single-crystal X-ray structure refinement
hydrogen bonding network.
FTIR and Raman spectroscopy
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/341183
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