High-pressure transformations of ilmenite to perovskite, and lithium niobate to perovskite in zinc germanate

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作者
Hitoshi Yusa
Masaki Akaogi
Nagayoshi Sata
Hiroshi Kojitani
Ryo Yamamoto
Yasuo Ohishi
机构
[1] National Institute for Materials Science,Advanced Materials Laboratory
[2] Gakushuin University,Department of Chemistry
[3] Japan Agency for Marine-Earth Science and Technology,Institute for Research on Earth Evolution
[4] Japan Synchrotron Radiation Research Institute,undefined
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关键词
Perovskite; Lithium niobate; Ilmenite; X-ray diffraction; High-pressure phase transition;
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摘要
In-situ X-ray powder diffraction measurements conducted under high pressure confirmed the existence of an unquenchable orthorhombic perovskite in ZnGeO3. ZnGeO3 ilmenite transformed into perovskite at 30.0 GPa and 1300±150 K in a laser-heated diamond anvil cell. After releasing the pressure, the lithium niobate phase was recovered as a quenched product. The perovskite was also obtained by recompression of the lithium niobate phase at room temperature under a lower pressure than the equilibrium phase boundary of the ilmenite–perovskite transition. Bulk moduli of ilmenite, lithium niobate, and perovskite phases were calculated on the basis of the refined X-ray diffraction data. The structural relations among these phases are considered in terms of the rotation of GeO6 octahedra. A slight rotation of the octahedra plays an important role for the transition from lithium niobate to perovskite at ambient temperature. On the other hand, high temperature is needed to rearrange GeO6 octahedra in the ilmenite–perovskite transition. The correlation of quenchability with rotation angle of GeO6 octahedra for other germanate perovskites is also discussed.
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页码:217 / 226
页数:9
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