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Formation of nanosize iron particles, their morphology and interactionwith alumina support film

机译:形成纳米氧化铁颗粒,它们的形态和互动,氧化铝支撑膜

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Nanosize particles of iron have been dispersed over alumina by thermal deposition under vacuum at substrate temperature of 500 deg C and studied with regard to their size distribution, shape, crystal structure and changes occurring in hydrogen, oxygen and vacuum by transmission electron microscopy. It is shown that deposits of mass thickness of 0.8-1.5 nm yield good dispersion of a platelet-type iron particles of bcc phase (a=0.286 nm) having average projected diameter approx 7.5-17.5 nm. The particles interact with the alumina support and undergo both physical and chemical changes in hydrogen, oxygen and vacuum at elevated temperatures. The resulting morphologies are identified either with core-and-ring or torus shape crystallites. While the former is attributed to Fe and Fe_3O_4 (magnetite, fcc with a=0.836 nm), the later corresponds to Fe_3O_4 and FeAl_2O_4. Reappearance of core-and-ring morphology is observed after heating the torus shape particles in oxygen at 500 deg C for 2h. In vacuum, Fe particles form Fe_3O_4 with some FeAl_2O_4 but assume irregular shapes/faceting character.
机译:纳米化铁颗粒通过在500℃的底物温度下的真空下通过热沉积分散在氧化铝上,并通过透射电子显微镜通过尺寸分布,形状,晶体结构和在氢气,氧气和真空中发生的变化进行研究。结果表明,质量厚度为0.8-1.5nm的质量厚度,产量良好分散的BCC相(A = 0.286nm)的血小板型铁颗粒,其平均突出直径约为7.5-17.5nm。颗粒与氧化铝载体相互作用并在升高的温度下进行氢气,氧气和真空的物理和化学变化。由此产生的形态用芯和环或圆环形状微晶鉴定。虽然前者归因于FE和FE_3O_4(磁铁矿,带有= 0.836nm的FCC),但后面对应于FE_3O_4和FEAL_2O_4。在500℃下将圆环形状颗粒加热至500℃的氧气中的氧气形状颗粒2h后,观察到核和环形态的重新出现。在真空中,Fe颗粒形成Fe_3O_4,具有一些FEAL_2O_4,但假设不规则的形状/刻面字符。

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