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Fabrication of iron oxide nanotube arrays by electrochemical anodization

机译:电化学阳极氧化法制备氧化铁纳米管阵列

摘要

Highly ordered iron oxide nanotubes with smooth and homogeneous wall were electrochemically synthesized by potentiostatic anodization of iron foil in an ethylene glycol based electrolyte containing NH4F and deionized water at 60 degrees C. A model was proposed to explain the formation mechanism. The effects of anodization conditions, such as potential, H2O concentration, NH4F concentration, temperature and thermal treatment, on morphology and structural features of the oxide layer were thoroughly investigated. It is shown that the current transient curve can be used as a tool to approximately predict the morphology and the formation of nanotube during the anodization of iron.
机译:通过在60°C的含有NH4F和去离子水的乙二醇基电解质中对铁箔进行恒电位阳极氧化,电化学合成壁光滑且均匀的高阶氧化铁纳米管。提出了一个模型来解释其形成机理。深入研究了阳极氧化条件(例如电势,H2O浓度,NH4F浓度,温度和热处理)对氧化物层的形态和结构特征的影响。结果表明,电流瞬变曲线可以作为一种工具来近似预测铁的阳极氧化过程中的形态和纳米管的形成。

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