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Distortion of the oxygen sublattice in pure cubic-ZrO_2

机译:纯立方ZrO_2中氧亚晶格的畸变

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摘要

Multilayer films of pure ZrO_2 and CeO_2 were grown using molecular beam epitaxy on a yttria-stabilized zirconia (YSZ) substrate. Distinctive forbidden diffraction spots of (odd, odd, even) type were observed on the selected-area electron-diffraction patterns of the film. Dark-field imaging clearly revealed that these forbidden diffraction spots were solely due to the ZrO_2 layers. Comparison of the electron diffraction pattern with that simulated by dynamical calculations suggest that the pure ZrO_2 layers possess a cubic structure of space with the group P4 3m oxygen sublattice being displaced diagonally, rather than along the c axis as suggested for YSZ. Our results further suggest that the displacement of the oxygen from the ideal (1/4, 1/4, 1/4) position might have been introduced during the film growth process.
机译:使用分子束外延在氧化钇稳定的氧化锆(YSZ)衬底上生长纯ZrO_2和CeO_2的多层膜。在膜的选择区域电子衍射图案上观察到(奇,奇,偶)型的明显的禁止衍射点。暗场成像清楚地表明,这些禁止的衍射点仅归因于ZrO_2层。将电子衍射图与通过动力学计算模拟的电子衍射图进行比较表明,纯ZrO_2层具有立方结构的空间,P4 3m组氧亚晶格沿对角线而不是YSZ建议沿c轴移动。我们的结果进一步表明,在薄膜生长过程中可能已经引入了氧气从理想(1/4,1/4,1/4)位置的位移。

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