Инд. авторы: | Likhacheva A.Y., Rashchenko S.V., Seryotkin Y.V. |
Заглавие: | The deformation mechanism of a pressure-induced phase transition in dehydrated analcime |
Библ. ссылка: | Likhacheva A.Y., Rashchenko S.V., Seryotkin Y.V. The deformation mechanism of a pressure-induced phase transition in dehydrated analcime // Mineralogical Magazine. - 2012. - Vol.76. - Iss. 1. - P.129-142. - ISSN 0026-461X. - EISSN 1471-8022. |
Внешние системы: | DOI: 10.1180/minmag.2012.076.1.129; SCOPUS: 2-s2.0-84857858186; |
Реферат: | eng: The elastic and structural behaviour of dehydrated analcime in compression in a non-penetrating medium up to 3 GPa was studied in a diamond anvil cell using in situ synchrotron powder diffraction. A first-order phase transition at 0.4-0.7 GPa is accompanied by a symmetry change from monoclinic (I2/a) to pseudo-rhombohedral (R3) due to trigonalization of the aluminosilicate framework. This is due to the migration of cations to new positions close to the 6-membered rings forming the channels. The reduction of the mean aperture of the structure-forming 6- and 8-membered rings, as a result of tetrahedral tilting, leads to a 7.5% reduction in volume at the phase transition. The bulk modulus values are 38(2) GPa for the low pressure (LP) phase [fitted with a Murnaghan equation of state, K' = 4 (fixed)] and 11(4) GPa for the high pressure (HP) phase [fitted with a third-order Birch-Murnaghan equation of state, K' = 9(1)]. The elastic behaviour of the LP phase is anisotropic, with compressibilities β a :β b :β c in the ratio 1:4:2; the most compressible direction b coinciding with the orientation of empty 8-membered rings. The compressibility of the HP phase is isotropic. Trigonalization appears to be the most effective (and probably unique) mechanism of radical volume contraction for the ANA structure type. © 2012 Mineralogical Society.
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Ключевые слова: | Deformation mechanism; dehydrated analcime; Diamond-anvil cell; Elastic behaviour; First-order phase transitions; High pressure; In-situ synchrotrons; Low pressures; Murnaghan equation of state; New position; Pressure-induced phase transition; Structural behaviour; Structure type; Symmetry changes; Third-order; Volume contraction; Deformation mechanism; dehydrated analcime; First-order phase transitions; High pressure; In-situ synchrotrons; Murnaghan equation of state; Pressure-induced phase transition; Structural behaviour; Aluminosilicates; Compressibility; Crystal structure; Equations of state of solids; High pressure engineering; Zeolites; Compressibility; Equations of state; High pressure engineering; Phase transitions; Zeolites; Phase transitions; Crystal structure; aluminosilicate; analcime; anisotropy; compressibility; crystal structure; deformation; diamond anvil cell; elastic property; phase transition; dehydration; 8-membered ring; 6-membered rings; phase transition; high pressure; dehydrated analcime; crystal structure; Birch-Murnaghan equation of state; compressibility; |
Издано: | 2012 |
Физ. характеристика: | с.129-142 |