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Fabrication of Fe-Al nanoparticles by selective oxidation of Fe-Al thin films

机译:Fe-Al薄膜的选择性氧化制备Fe-Al纳米颗粒

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摘要

The possibility of a new technique for fabricating nanoparticles from thin films using selective oxidation in an atmosphere mixture of water vapor and hydrogen was investigated. Fe-5wt.%Al films were RF-sputtered and annealed in the atmosphere mixture at 900°C for up to 200 min, in order to oxidize aluminum selectively. Thermodynamics simulation showed that temperatures exceeding 800°C are necessary to prevent iron from being oxidized, as confirmed by the depth profile of XPS. As the annealing time increased, the morphology of the 200-nm Fe-Al films changed from the continuous to the discontinuous type; thus, particulate Fe-Al films formed after 100 min. The particulate 10- to 100-nm Fe-Al films showed super-paramagnetic behavior after the oxidation. Thus, a new technique for fabricating nanoparticles was successfully introduced using selective oxidation.
机译:研究了在水蒸气和氢的气氛混合物中使用选择性氧化从薄膜制备纳米颗粒的新技术的可能性。将Fe-5wt。%Al薄膜进行RF溅射,然后在大气混合物中于900°C退火200分钟,以选择性氧化铝。热力学模拟表明,要防止铁被氧化,必须超过800°C的温度,这已由XPS的深度曲线证实。随着退火时间的增加,200nm Fe-Al薄膜的形貌从连续变为不连续。因此,在100分钟后形成了颗粒状的Fe-Al膜。氧化后的10至100 nm颗粒状Fe-Al膜表现出超顺磁行为。因此,使用选择性氧化成功地引入了用于制造纳米颗粒的新技术。

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