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Lattice Structure and Dynamics of Two-Layer Heterostructures of Barium-Strontium Titanate and Layered Bismuth Titanate of Various Thicknesses on a Magnesium Oxide Substrate

机译:氧化镁基材上各种厚度的两层异质结构的晶格结构和动力学。氧化镁基材上各种厚度的层状铋

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The lattice structure and dynamics of single-crystal Bi4Ti3O12 with a thickness from 4 to 430 nm on a (001)MgO substrate with a previously deposited Ba0.4Sr0.6TiO3 sublayer (4 nm) have been studied. The two-layer structures were prepared by radio-frequency sputtering of ceramic targets of the corresponding compositions. The X-ray diffraction studies performed at room temperature have shown that, in this heterostructure, axis c of the Bi4Ti3O12 unit cell is perpendicular to the substrate, and direction [100] has an angle of +/- 45 degrees to the [100]MgO direction. At the thicknesses of Bi4Ti3O12 to 40 nm, the film unit cell is compressed in the direction of a normal to the substrate plane and extended in the conjugate plane, and the sign of the deformation is changed at large thicknesses. It is found that the phonon mode frequency in the Bi4Ti3O12 film shift and additional peaks appear in the Raman spectra, which demonstrates an increase in the degree of monoclinic distortion of the film crystal structure as compared to the crystal structure.
机译:已经研究了具有先前沉积的Ba0.4SR0.6TiO3子窗(4nm)的(001)MgO衬底的4至430nm的单晶Bi4Ti3O12的单晶Bi4Ti3O12的晶格结构和动力学。通过射频溅射的相应组合物的陶瓷靶的射频溅射制备双层结构。在室温下进行的X射线衍射研究表明,在该异质结构中,Bi4Ti3O12单元电池的轴线C垂直于基板,方向[100]具有+/- 45度的角度,[100] MgO方向。在Bi4Ti3O12至40nm的厚度处,薄膜单元电池在垂直于基板平面的方向上被压缩,并且在共轭平面中延伸,并且变形的符号以大的厚度改变。结果发现,与晶体结构相比,Bi4Ti3O12膜移位和附加峰值中的峰值模式频率出现在拉曼光谱中,这表明与晶体结构相比膜晶体结构的单斜变形程度的增加。

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