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Ordered Fe(II)Ti(IV)O-3 Mixed Mono layer Oxide on Rutile TiO2(011)

机译:金红石型TiO2(011)上的有序Fe(II)Ti(IV)O-3混合单层氧化物

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摘要

Oxide monolayers supported or intermixed with an oxide support are potential nanocatalysts whose properties are determined by the interplay with the support. For fundamental studies of monolayer oxides on metal oxide supports, well-defined systems are needed, but so far, the synthesis of monolayer oxides with long-range order on single-crystal oxide surfaces is rare. Here, we show by a combination of scanning tunneling microscopy, photoemission spectroscopy, and density functional theory (DFT)-based computational analysis that the rude TiO2(011) surface supports the formation of an ordered mixed FeTiO3 monolayer. Deposition of iron in a slightly oxidizing atmosphere (10(-8)Torr O-2) and annealing to 300 degrees C results in a well-ordered surface structure with Fe in a 2+ charge state and Ti in a 4+ charge states. Low-energy ion scattering suggests that the cation surface composition is close to half Fe and half Ti. This surface is stable in ultrahigh vacuum to annealing temperatures of 300 degrees C before the iron is reduced. DFT simulations confirm that a surface structure with coverage of 50% Fe0 units is stable and forms an ordered structure. Although distinct from known bulk phases of the iron titanium oxide systems, the FeTiO3 monolayer exhibits some resemblance to the ilmenite structure, which may suggest that a variety of different mixed oxide phases (of systems that exist in a bulk ilmenite phase) may be synthesized in this way on the rutile TiO2(011) substrate.
机译:负载或与氧化物载体混合的氧化物单层是潜在的纳米催化剂,其性质取决于与载体的相互作用。为了对金属氧化物载体上的单层氧化物进行基础研究,需要定义明确的体系,但是到目前为止,在单晶氧化物表面上具有长程有序的单层氧化物的合成还很少。在这里,我们通过扫描隧道显微镜,光发射光谱和基于密度泛函理论(DFT)的计算分析的组合显示,粗鲁的TiO2(011)表面支持有序混合FeTiO3单层的形成。铁在轻微氧化的气氛中(10(-8)Torr O-2)沉积并退火到300摄氏度,形成的表面结构井井有条,其中Fe为2+电荷态,Ti为4+电荷态。低能离子散射表明阳离子表面组成接近一半的Fe和一半的Ti。在还原铁之前,该表面在超高真空下对300摄氏度的退火温度稳定。 DFT模拟证实,覆盖率为50%Fe0单位的表面结构是稳定的,并形成有序结构。尽管与铁钛氧化物体系的已知本体相不同,但FeTiO3单层与钛铁矿结构表现出一些相似之处,这可能表明可以合成多种不同的混合氧化物相(存在于本体钛铁矿相中的体系)。以这种方式在金红石TiO2(011)衬底上。

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