Physics – Condensed Matter – Materials Science
Scientific paper
2010-08-27
Materials Research Bulletin 45, (2010) 1732-1735
Physics
Condensed Matter
Materials Science
16 pages, 5 figures, 26 references, Article in Press
Scientific paper
10.1016/j.materresbull.2010.06.0
We studied the high-pressure effects on the crystalline structure of monoclinic HfTiO4 and ZrTiO4. We found that the compressibility of these ceramics is highly non-isotropic, being the b-axis the most compressible one. In addition, the a-axis is found to have a small and negative compressibility. At 2.7 GPa (10.7 GPa) we discovered the onset of an structural phase transition in HfTiO4 (ZrTiO4), coexisting the low- and high-pressure phases in a broad pressure range. The new high-pressure phase has a monoclinic structure which involves an increase in the Ti-O coordination and a collapse of the cell volume. The equation of state for the low-pressure phase is also determined.
Bondarenko Tatiana
Errandonea Daniel
Khyzhun Oleg
Santamaria-Perez David
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