首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Effect of magnetic structural processing on structure and texture of La2Zr2O7 buffer layers
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Effect of magnetic structural processing on structure and texture of La2Zr2O7 buffer layers

机译:磁性结构处理对La2Zr2O7缓冲层结构和织构的影响

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摘要

Epitaxial CeO2 seed layer and La2Zr2O7 (LZO) buffer layers were deposited on biaxiallytextured Ni-5 at.% W (NiW) tape substrate by liquid-phase polymer assisted nanopartides deposition (PAND) method. LZO layers deposited by PAND have consistently shown tilting of the c-axis toward the direction of the sample's surface normal. A new approach increasing the sharpening of the buffer texture by magnetic structural processing (MSP) of buffer layers was tested. The LZO layers, deposited on the seed and buffer layers after MSP, have dense and smooth surface structure, and more importantly, significantly improved out-of-plane texture, compared with the LZO layers that were deposited on a layer without MSP. Transmission electron microscopy study confirmed the c-axis tilting of CeO2 and LZO layers and revealed the absence of interfaces between LZO layers which have been grown on the layers after MSP. There are very small (24 nm) gated pores in the single-crystal structure of LZO layers that are not typical for structure of LZO layers obtained by liquid-phase methods. Thus the LZO buffer layers can serve as an effective metal-ion diffusion barrier.
机译:外延CeO2种子层和La2Zr2O7(LZO)缓冲层通过液相聚合物辅助纳米粒子沉积(PAND)方法沉积在双轴织构的Ni-5 at。%W(NiW)胶带基底上。通过PAND沉积的LZO层始终显示出c轴朝样品表面法线方向的倾斜。测试了一种通过缓冲层的磁性结构处理(MSP)提高缓冲纹理锐化程度的新方法。与在没有MSP的层上沉积的LZO层相比,在MSP之后沉积在种子和缓冲层上的LZO层具有致密且光滑的表面结构,更重要的是,显着改善了面外纹理。透射电子显微镜研究证实了CeO2和LZO层的c轴倾斜,并揭示了在MSP之后在这些层上生长的LZO层之间不存在界面。 LZO层的单晶结构中存在非常小的(24 nm)栅控孔,这对于通过液相方法获得的LZO层的结构而言并不常见。因此,LZO缓冲层可以用作有效的金属离子扩散阻挡层。

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