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首页> 外文期刊>Nanomaterials >Symmetry-Induced Structuring of Ultrathin FeO and Fe 3 O 4 Films on Pt(111) and Ru(0001)
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Symmetry-Induced Structuring of Ultrathin FeO and Fe 3 O 4 Films on Pt(111) and Ru(0001)

机译:Pt(111)和Ru(0001)上超薄FeO和Fe 3 O 4薄膜的对称诱导结构

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Iron oxide films epitaxially grown on close-packed metal single crystal substrates exhibit nearly-perfect structural order, high catalytic activity (FeO) and room-temperature magnetism (Fe 3 O 4 ). However, the morphology of the films, especially in the ultrathin regime, can be significantly influenced by the crystalline structure of the used support. This work reports an ultra-high vacuum (UHV) low energy electron/synchrotron light-based X-ray photoemission electron microscopy (LEEM/XPEEM) and electron diffraction (μLEED) study of the growth of FeO and Fe 3 O 4 on two closed-packed metal single crystal surfaces: Pt(111) and Ru(0001). The results reveal the influence of the mutual orientation of adjacent substrate terraces on the morphology of iron oxide films epitaxially grown on top of them. On fcc Pt(111), which has the same mutual orientation of adjacent monoatomic terraces, FeO(111) grows with the same in-plane orientation on all substrate terraces. For Fe 3 O 4 (111), one or two orientations are observed depending on the growth conditions. On hcp Ru(0001), the adjacent terraces of which are ‘rotated’ by 180° with respect to each other, the in-plane orientation of initial FeO(111) and Fe 3 O 4 (111) crystallites is determined by the orientation of the substrate terrace on which they nucleated. The adaptation of three-fold symmetric iron oxides to three-fold symmetric substrate terraces leads to natural structuring of iron oxide films, i.e., the formation of patch-like magnetite layers on Pt(111) and stripe-like FeO and Fe 3 O 4 structures on Ru(0001).
机译:在紧密堆积的金属单晶衬底上外延生长的氧化铁膜表现出近乎完美的结构顺序,高催化活性(FeO)和室温磁性(Fe 3 O 4)。但是,所用载体的晶体结构会显着影响膜的形态,尤其是在超薄状态下。这项工作报告了超高真空(UHV)低能电子/同步加速器光基X射线光发射电子显微镜(LEEM / XPEEM)和电子衍射(μLEED)研究FeO和Fe 3 O 4在两个封闭状态下的生长-堆积的金属单晶表面:Pt(111)和Ru(0001)。结果揭示了相邻衬底平台的相互取向对在其顶部外延生长的氧化铁膜的形态的影响。在具有相邻单原子平台相同取向的fcc Pt(111)上,FeO(111)在所有衬底平台上均以相同的面内取向生长。对于Fe 3 O 4(111),根据生长条件观察到一种或两种取向。在hcp Ru(0001)上,相邻的平台相互“旋转” 180°,初始FeO(111)和Fe 3 O 4(111)晶体的面内取向由取向确定它们在其上成核的基底平台的一部分。三重对称的铁氧化物适应三重对称的基体平台导致铁氧化物薄膜的自然结构化,即在Pt(111)上形成块状磁铁矿层以及条状FeO和Fe 3 O 4 Ru(0001)上的结构。

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