Thermodynamic investigation of the phase equilibrium boundary between TiO2 rutile and its α-PbO2-type high-pressure polymorph

Author:

Kojitani HiroshiORCID,Yamazaki Monami,Kojima Meiko,Inaguma Yoshiyuki,Mori Daisuke,Akaogi Masaki

Funder

Japan Society for the Promotion of Science

Publisher

Springer Science and Business Media LLC

Subject

Geochemistry and Petrology,General Materials Science

Reference49 articles.

1. Akaogi M, Kusaba K, Susaki J, Yagi T, Matsui M, Kikegawa T, Yusa H, Ito E (1992) High-pressure high-temperature stability of αPbO2-type TiO2 and MgSiO3 majorite: calorimetric and in situ X-ray diffraction studies. In: Syono Y, Manghnani MH (eds) High-pressure research: application to Earth and planetary sciences. American Geophysical Union, Washington, DC, pp 447–455

2. Akaogi M, Takayama H, Kojitani H, Kawaji H, Atake T (2007) Low-temperature heat capacities, entropies and enthalpies of Mg2SiO4 polymorphs, and α–β–γ and post-spinel phase relations at high pressure. Phys Chem Miner 34:169–183

3. Akaogi M, Horiuchi N, Ishii T, Kojitani H (2012) High-pressure phase relations in the system TiO2–ZrO2 to 12 GPa: stability of PbO2-type srilankite solid solutions of (Ti1 – x, Zrx)O2 (0 ≤ x ≤ 0.6). Phys Chem Miner 39:797–802

4. Anderson OL (1995) Equations of state of solids for geophysics and ceramic science. Oxford monographs on geology and geophysics, vol 31. Oxford University Press, New York

5. Berman RG, Brown TH (1985) The heat capacity of minerals in the system K2O–Na2O–CaO–MgO–FeO–Fe2O3–Al2O3–SiO2–TiO2–H2O–CO2: representation, estimation, and high temperature extrapolation. Contrib Mineral Petrol 89:168–183

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