X射线光电子能谱
微电子
化学状态
背景(考古学)
异质结
化学成像
材料科学
锶
分析化学(期刊)
脉冲激光沉积
纳米技术
薄膜
光电子学
化学
物理
遥感
核磁共振
地质学
古生物学
高光谱成像
有机化学
色谱法
作者
Mathieu Frégnaux,J. M. O’Donnell,N. Labchir,Yoan Bourlier,Damien Aureau,Jean‐Luc Pelouard,Arnaud Etchéberry,Anne‐Marie Gonçalves
标识
DOI:10.1051/epjconf/202227301012
摘要
The strength of XPS imaging lies in its ability to (i) locate small patterns on sample surface, and (ii) inform, with micrometric lateral resolution, about the chemical environment of the elements detected at the surface. In this context, strontium-based perovskites appear to be well-adapted for such photoemission experiments thanks to their tunability and variability. These functional oxides have great potential for emerging optoand microelectronic applications, especially for transparent conductive oxide. Patterned heterostructure SrTiO 3 /SrVO 3 was grown by pulsed laser deposition using a shadow mask. This stack was then analysed by XPS mapping in serial acquisition mode. Ti2p and V2p core level imaging clearly highlights the SrTiO 3 and SrVO 3 domains. The XPS mapping of the Sr3d core level will be extensively discussed: strontium being a common element to both oxides with a very similar chemical environment. Despite a lower contrast in Sr3d images, the two materials are discernible thanks to the topography. In addtion, the use of Sr3d FWHM image is a real asset to evidence the two phases. Finally, data processing by principal component analysis allows us to extract significant spectral information on the strontium atoms.
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