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Clustered atom-replaced structure in single-crystal-like metal oxide

机译:单晶硅氧化物中的聚集原子替代结构

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By means of metal organic deposition using trifluoroacetates (TFA-MOD), we replaced and localized two or more atoms in a single-crystalline structure having almost perfect orientation. Thus, we created a new functional structure, namely, clustered atom-replaced structure (CARS), having single-crystal-like metal oxide. We replaced metals in the oxide with Sm and Lu and localized them. Energy dispersive x-ray spectroscopy results, where the Sm signal increases with the Lu signal in the single-crystalline structure, confirm evidence of CARS. We also form other CARS with three additional metals, including Pr. The valence number of Pr might change from 3+ to approximately 4+, thereby reducing the Pr-Ba distance. We directly observed the structure by a high-angle annular dark-field image, which provided further evidence of CARS. The key to establishing CARS is an equilibrium chemical reaction and a combination of additional larger and smaller unit cells to matrix cells. We made a new functional metal oxide with CARS and expect to realize CARS in other metal oxide structures in the future by using the above-mentioned process.
机译:通过使用三氟乙酸酯(TFA-MOD)的金属有机沉积,我们在具有几乎完美取向的单晶结构中更换和局限两种或更多种原子。因此,我们创造了一种新的功能结构,即具有单晶硅氧化物的聚集的原子替代结构(汽车)。我们用SM和LU取代了氧化物中的金属并局限化。能量分散X射线光谱结果,其中SM信号随着单晶结构中的LU信号增加,确认汽车的证据。我们还形成了其他三款额外金属的汽车,包括公关。 PR的价值可能从3 +变为大约4+,从而减少PR-BA距离。我们通过大角度环形暗场图像直接观察到该结构,这提供了汽车的进一步证据。建立汽车的关键是平衡化学反应和另外的较大和较小的单位细胞的组合至基质细胞。我们制造了一种带有汽车的新功能性金属氧化物,期望通过使用上述方法在将来在其他金属氧化物结构中实现汽车。

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