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Phase segregation in Mn-doped In2O3: in situ high-pressure high-temperature synchrotron studies in multi-anvil assemblies

Bekheet, Maged F. ; Schwarz, Marcus R. ; Müller, Mathis M. ; Lauterbach, Stefan ; Kleebe, Hans-Joachim ; Riedel, Ralf ; Gurlo, Aleksander (2013)
Phase segregation in Mn-doped In2O3: in situ high-pressure high-temperature synchrotron studies in multi-anvil assemblies.
In: RSC Advances, 3 (16)
doi: 10.1039/c3ra22998j
Article, Bibliographie

Abstract

Manganese-doped bixbyite-type c-In2O3 decomposes into corundum-type rh-In2O3 and cubic MnO at 8 GPa and 950 °C.

Item Type: Article
Erschienen: 2013
Creators: Bekheet, Maged F. ; Schwarz, Marcus R. ; Müller, Mathis M. ; Lauterbach, Stefan ; Kleebe, Hans-Joachim ; Riedel, Ralf ; Gurlo, Aleksander
Type of entry: Bibliographie
Title: Phase segregation in Mn-doped In2O3: in situ high-pressure high-temperature synchrotron studies in multi-anvil assemblies
Language: English
Date: 26 February 2013
Publisher: RSC Publishing
Journal or Publication Title: RSC Advances
Volume of the journal: 3
Issue Number: 16
DOI: 10.1039/c3ra22998j
Abstract:

Manganese-doped bixbyite-type c-In2O3 decomposes into corundum-type rh-In2O3 and cubic MnO at 8 GPa and 950 °C.

Divisions: 11 Department of Materials and Earth Sciences
11 Department of Materials and Earth Sciences > Earth Science
11 Department of Materials and Earth Sciences > Earth Science > Geo-Material-Science
11 Department of Materials and Earth Sciences > Material Science
11 Department of Materials and Earth Sciences > Material Science > Dispersive Solids
Date Deposited: 13 Jan 2014 12:47
Last Modified: 12 Aug 2021 12:32
PPN:
Funders: The financial support by the German Research Foundation DFG within the priority programme SPP1236 and DESY are greatly acknowledged.
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