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Deposition of superlattice PbTiO_3/(Pb, La)TiO_3

机译:超晶格PBTIO_3 /(PB,LA)TIO_3

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摘要

Superlattices of perovskite materials are now considered as new approach for the creation of novel ferroelectric properties. The structure of Superlattices is made by a multi-source deposition. In this experiment, PbTiO_3/(Pb, La)TiO_3 (PT/PLT) superlattices were epitaxially grown on (100) MgO by rf-magnetron sputtering. The sputtering apparatus comprises muti-target system. Two powder targets of FT and PLT(20) with an excess of PbO powder (10 mol%) were used for the sputtering. The superlattices were sputtered from the two targets by turns. The modulation wavelength A of the superlattice is controlled by the deposition times of each target. The modulation wavelength was varied from 8 to 240 nm and the total thickness of the superlattice was 240 nm. X-ray diffraction shows the highly oriented (001) and (002) peak with the satellite signals indicating the formation of the superlattice. The microstructure of the superlattice was studied by a high angle annular dark field- scanning transmission electron microscopy (HAADF-STEM).
机译:佩罗夫斯基钛矿材料的超晶格现在被认为是创造新的铁电性质的新方法。超晶格的结构是通过多源沉积进行的。在该实验中,通过RF-磁控溅射在(100)MgO上外延生长PBTIO_3 /(PB,LA)TiO_3(Pt / PLT)超晶格。溅射装置包括Muti-靶系统。使用过量的PbO粉末(10mol%)的Ft和PLT(20)的两种粉末靶用于溅射。通过转动从两个靶标溅射超晶格。超晶格的调制波长A由每个目标的沉积时间控制。调制波长从8到240nm变化,并且超晶格的总厚度为240nm。 X射线衍射显示出高度取向的(001)和(002)峰值,其卫星信号指示超晶格的形成。通过高角度环形暗场扫描透射电子显微镜(HAADF-茎)研究了超晶格的微观结构。

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