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Changes in the surface topography and electronic structure of SrTiO_3 (110) single crystals heated under oxidizing and reducing conditions

机译:在氧化和还原条件下加热的SrTiO_3(110)单晶的表面形貌和电子结构的变化

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摘要

Strontium titanate (SrTiO_3) is a promising material for resistive high temperature oxygen sensors. Unfortunately, thermal treatment results in undesirable surface reconstruction and the formation of secondary phases. Each of the three stable surface orientations ((100), (110) and (111)) shows a characteristic reconstruction of the topmost layers. To investigate these changes in more detail, SrTiO_3(11 0) single crystals were heated up to 1000℃ in ultrahigh vacuum and synthetic air, respectively. Atomic force microscopy (AFM) was applied to characterize the surface topography. Metastable impact electron spectroscopy (MIES) and Auger electron spectroscopy (AES) yielded information on the electronic structure and the chemical composition of the surface and the near surface region. Under all investigated conditions microfaceting of the (110) surface could be observed resulting in TiO_2-terminated ridges.
机译:钛酸锶(SrTiO_3)是用于电阻式高温氧气传感器的有前途的材料。不幸的是,热处理导致不希望的表面重建和第二相的形成。三种稳定的表面方向((100),(110)和(111))中的每一个都显示了最顶层的特征重构。为了更详细地研究这些变化,分别在超高真空和合成空气中将SrTiO_3(11 0)单晶加热至1000℃。应用原子力显微镜(AFM)表征表面形貌。亚稳冲击电子光谱(MIES)和俄歇电子光谱(AES)得出有关表面和近表面区域的电子结构和化学成分的信息。在所有研究的条件下,都可以观察到(110)表面的微刻面,形成TiO_2封端的脊。

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