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Novel self-assembled nanostructured alumina array with nanoscale grooves

机译:具有纳米级凹槽的新型自组装纳米结构氧化铝阵列

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摘要

A unique novel self-assembled nanostructured alumina array with nanoscale grooves can be induced and controlled in nanometer dimension by a general electrochemical oxidation of aluminum in sulfuric acid. Almost inter-perpendicular self-assembled alumina nanostructure arrays separated by a few tens nanometer thick interface sheet were also observed in many domains. And the formation of this nanostructured array is considered as the result of the special competition balance between electrochemical oxidation and etching. Because of similarities of aluminum anodization with semiconductor anodization, our results may be proved useful for Si or GaAs nanostructure synthesis.
机译:通过在硫酸中对铝进行一般的电化学氧化,可以诱导和控制具有纳米级凹槽的独特的新型自组装纳米结构氧化铝阵列。在许多领域中,也观察到了由几十纳米厚的界面片隔开的几乎垂直的自组装氧化铝纳米结构阵列。并认为这种纳米结构阵列的形成是电化学氧化与蚀刻之间特殊竞争平衡的结果。由于铝阳极氧化与半导体阳极氧化的相似性,我们的结果可能被证明可用于Si或GaAs纳米结构的合成。

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