2001•Physics of the Solid StateRequires access

Structural phase transitions in CdTiO3

Yu. V. Kabirov, B. S. Kul’buzhev, M. F. Kupriyanov

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Abstract

The reconstructive phase transition from the ilmenite-like CdTiO 3 modification to the perovskite modification is investigated thoroughly. It is revealed that the reconstructive transition is determined by size effects, results in the formation of the closest packing of the ilmenite CdTiO 3 structure, and is irreversible with a decrease in temperature. The perovskite CdTiO 3 modification undergoes displacive structural phase transitions at temperatures of 110, 220, and 380°C. The first displacive phase transition is isostructural, whereas the second and third transitions are associated with rotations of oxygen octahedra.

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What this paper is about

The reconstructive phase transition from the ilmenite-like CdTiO 3 modification to the perovskite modification is investigated thoroughly. It is revealed that the reconstructive transition is determined by size effects, results in the formation of the closest packing of the ilmenite CdTiO 3 structure, and is irreversible with a decrease in temperature. The perovskite CdTiO 3 modification undergoes displacive structural phase transitions at temperatures of 110, 220, and 380°C. The first displacive phase transition is isostructural, whereas the second and third transitions are associated with rotations of oxygen octahedra.

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Available abstract

The reconstructive phase transition from the ilmenite-like CdTiO 3 modification to the perovskite modification is investigated thoroughly. It is revealed that the reconstructive transition is determined by size effects, results in the formation of the closest packing of the ilmenite CdTiO 3 structure, and is irreversible with a decrease in temperature. The perovskite CdTiO 3 modification undergoes displacive structural phase transitions at temperatures of 110, 220, and 380°C. The first displacive phase transition is isostructural, whereas the second and third transitions are associated with rotations of oxygen octahedra.

Key concepts: Isostructural, Materials science, Ilmenite, Phase transition, Octahedron, Perovskite (structure), Phase (matter), Crystallography

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