High-pressure phase behavior of SrCO3: an experimental and computational Raman scattering study
The high-pressure phase behavior of strontianite (SrCO 3 ) was both experimentally and theoretically investigated by Raman spectroscopy up to 78 GPa in a diamond anvil cell and density functional theory-based calculations. Our study shows a phase transition between 23.7 and 26.8 GPa during compressi...
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Veröffentlicht in: | Physics and chemistry of minerals 2017-05, Vol.44 (5), p.335-343 |
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Hauptverfasser: | , , , , , |
Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | The high-pressure phase behavior of strontianite (SrCO
3
) was both experimentally and theoretically investigated by Raman spectroscopy up to 78 GPa in a diamond anvil cell and density functional theory-based calculations. Our study shows a phase transition between 23.7 and 26.8 GPa during compression from space group
Pmcn
to post-aragonite SrCO
3
, which is accompanied by significant changes in the vibrational spectrum. The excellent agreement between the observed and computed Raman frequencies and intensities implies that the high-pressure polymorph has space group
Pmmn
and contributes to resolving an existing disagreement concerning the correct space group symmetry of this high-pressure polymorph. It is shown that the transition pressure from the aragonite to a post-aragonite phase increases linearly with decreasing cation radius for (Ca, Sr, Ba, Pb) carbonates. |
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ISSN: | 0342-1791 1432-2021 |
DOI: | 10.1007/s00269-016-0861-2 |