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Composition, morphology and particle size control in nanocrystalline iron oxide films grown by single-source CVD

机译:单源CVD种植的纳米氧化铁膜中的组成,形态和粒度控制

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Nanocrystalline iron oxide films have been deposited onto various substrates in a cold-wall CVD reactor using iron (Ⅲ) tert-butoxide as a single-source for iron and oxygen. Influence of the CVD parameters on the growth rate, chemical composition, morphology and crystalline phases has been investigated. The Fe:O stoichiometry in the films is sensitive to the deposition conditions. For instance, the interplay between precursor flux/deposition temperature allows a fine control over deposition of different iron oxide phases (hematite, maghemite and magnetite) and their interconversion. The different iron oxides could be detected by their typical morphological features and confirmed by XRD and XPS data of the deposits. At 350°C and below, ultrafme amorphous iron oxide grains with size lower than 10 nm are produced which, can be transformed to crystalline hematite or magnetite phases by ex-situ annealing. Spinel-type Fe_3O_4 was formed as a singular phase on copper at 450°C, which could be converted to Fe_2O_3 upon annealing. On silicon, a mixture of magnetite and hematite was formed at 450°C while a solid solution of the two phases resulted at 500°C. Transmission spectra of films deposited on glass show them to be transparent to visible light. The results are discussed in the light of XRD, SEM-EDX, XPS, AFM and elemental analysis.
机译:使用铁(Ⅲ)叔丁醇作为铁和氧的单一来源,已经将纳米晶氧化铁膜沉积在冷壁CVD反应器中的各种基板上。研究了CVD参数对生长速率,化学成分,形态和结晶相的影响。薄膜中的Fe:O化学计量对沉积条件敏感。例如,前体通量/沉积温度之间的相互作用允许在不同的氧化铁相沉积(赤铁矿,磁石和磁铁矿)和它们的相互转换的沉积上进行精细控制。通过其典型的形态特征可以检测不同的氧化铁,并通过储存的XRD和XPS数据确认。在350°C及以下,产生尺寸低于10nm的Ultrafme无定形氧化铁颗粒,可以通过前u退火转化为结晶赤铁矿或磁铁矿阶段。在450℃下形成尖晶石型Fe_3O_4作为铜的奇异相,在退火时可以转化为Fe_2O_3。在硅上,在450℃下形成磁铁矿和赤铁矿的混合物,而两相的固溶体导致500℃。沉积在玻璃上的薄膜的透射光谱显示它们对可见光透明。根据XRD,SEM-EDX,XPS,AFM和元素分析讨论了结果。

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