Temperature-dependent structural transformations of hydrothermally synthesized cubic Li2TiO3studied byin-situneutron diffraction

Author:

Laumann Andreas,Fehr Karl Thomas1,Boysen Hans2,Hölzel Markus3,Holzapfel Michael4

Affiliation:

1. Department für Geo- und Umweltwissenschaften, Sektion für Mineralogie, Petrologie und Geochemie, München, Deutschland

2. LMU München, Department für Geo- und Umweltwissenschaften, Garching, Deutschland

3. TU Darmstadt, FB Material- und Geowissenschaften, Darmstadt, Deutschland

4. Süd-Chemie AG, Battery Material, Moosburg, Deutschland

Abstract

AbstractThe structural changes of hydrothermally synthesized cubic Li2TiO3were studiedin-situduring heating and cooling at the neutron powder diffractometer SPODI at FRM II, Garching. The initially cubic (Fm-3m) phase shows a slight Li deficit, but becomes stoichiometric with increasing temperature. It transforms to a monoclinic (C2/c) structure above 300 °C and back to the same cubic (Fm-3m) structure at 1155 °C. A two-phase region is observed between 300 and 500 °C, indicating a first order character of the transformation. Below 1000 °C, during the first heating, the monoclinic Li2TiO3phase is disordered due to stacking faults. Between 1160 and 1140 °C, the cubic phase becomes monoclinic again upon cooling and stays well ordered down to room temperature. Anomalies in the thermal expansion of the monoclinic modification occur at around 600 °C for both, heating and cooling. These are assigned to strains building up during the first phase transformation upon heating and the confinement in the compacted ceramic sample during cooling, respectively.

Publisher

Walter de Gruyter GmbH

Subject

Inorganic Chemistry,Condensed Matter Physics,General Materials Science

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