SrCuO2の低次元構造におけるCu-O鎖の圧力誘発による分裂と歪み
Fuxiang Zhang1, Jianwei Wang, Udo Becker
1Department of Geological Sciences, University of Michigan, Ann Arbor, Michigan 48109, USA.
Journal of the American Chemical Society
|October 25, 2007
まとめ
高圧により,ストロンチウム銅酸化物 (SrCuO2) の鎖が裂け,ひっくり返り,新しい,より密度の高い材料を形成する. この高圧相は上部構造であり,通常の条件では安定していない.
科学分野:
- マテリアルサイエンス 材料科学
- 固体物理 固体物理学
- ハイプレッシャー研究
背景:
- ストロンチウム銅酸化物 (SrCuO2) は,無限層の四角形超伝導相として知られています.
- 極端な条件下での物質の振る舞いを理解することは,新しい性質を発見するために不可欠です.
研究 の 目的:
- 高圧下でのSrCuO2の構造変化を調査する.
- SrCuO2.2の高圧相を特徴づけるために.
主な方法:
- 7GPaを超える高圧実験.
- 室温構造分析 室温構造分析 室温構造分析
主要な成果:
- 7GPa以上の SrCuO2で観測されたCuO鎖の圧力誘発分裂.
- 四角形の超伝導相の上部構造体の形成.
- Cu-O鎖は圧力の増加に伴い折れ, 34.2 GPa で新しい高密度ポリモルフを生成する.
結論:
- SrCuO2は,高圧下において重要な構造変化を経験します.
- 高圧相は周囲の超伝導相とは異なり,通常の条件下では安定していない.
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