New pressure induced phase transitions in mullite-type Bi2(Fe4 – x Mn x )O10 – δ complex oxides

Author:

Kalita Patricia E.1,Cornelius Andrew L.1,Lipinska Kristina E.2,Lufaso Michael W.3,Kann Zachary R.3,Sinogeikin Stanislav4,Hemmers Oliver A.2,Schneider Hartmut5

Affiliation:

1. High Pressure Science & Engineering Center, Dept. of Physics, University of Nevada Las Vegas, NV, USA

2. Harry Reid Center for Environmental Studies, University of Nevada Las Vegas, NV, USA

3. Department of Chemistry, University of North Florida, Jacksonville, FL, USA

4. Geophysical Laboratory, Carnegie Institution of Washington, Washington, DC, USA

5. Institute of Crystallography, University of Köln, Köln, Germany

Abstract

Abstract Single phased mullite-type Bi2Fe4 x Mn x O10 δ mixed crystals (0.25 ≤ x ≤ 3.125) and the end-member Bi2Fe4O9, synthesized from the oxides by reaction sintering up to 825°C, were studied at high-pressures in order to probe their high-pressure behavior and any possible structural phase transitions. In-situ synchrotron radiation-based powder X-ray diffraction was carried out in a diamond anvil cell, under quasi-hydrostatic conditions, up to a pressure of about 20 GPa at room temperature for each sample. A pressure-induced phase transition was found in all samples. The transition appeared spread over a pressure range and was not completed at the top investigated pressure. This is the first report of a pressure-induced phase transition in Bi2Fe4 x Mn x O10 δ mixed crystals.

Publisher

Walter de Gruyter GmbH

Subject

Materials Chemistry,Metals and Alloys,Physical and Theoretical Chemistry,Condensed Matter Physics

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