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Aluminum Alloys Anodisation for Nanotemplates Application

机译:用于纳米模板的铝合金阳极氧化

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The aim of this investigation was to reveal the processing differences in achieving nanoporous anodized aluminium from aluminium alloys and their application for cobalt nanowires electrodeposition. The following types of aluminium were tested: pure Al (99.99%), commercial AA1050 alloy, commercial 6082 alloy and commercial 6060 alloy. Because of the differences in the surface temperature and high voltages during the anodizing steps, some stresses can be built up in the material. Therefore a strict temperature control should be was done to limit thermal stresses in materials. Alloying elements (Si, Mg) cause precipitates that are observed on the surface, especially for 6060 alloy. Nevertheless, a nanoporous structure can be obtained at the end of second anodization step on all aluminium alloys investigated. It was shown that the number density of pores on the surface is practically independent on the aluminium alloys used. However, the degree of hexagonal distribution of the pores depends on the type of anodized aluminium alloy. Also, a successful fabrication of Co nanowire arrays using nanoporous anodic alumina template produced on Al alloy has been demonstrated, and the uniform filling of the template by cobalt nanowires arrays is discussed.
机译:这项研究的目的是揭示从铝合金获得纳米多孔阳极氧化铝的工艺差异及其在钴纳米线电沉积中的应用。测试了以下类型的铝:纯Al(99.99%),商品AA1050合金,商品6082合金和商品6060合金。由于阳极氧化步骤中表面温度和高压的差异,材料中可能会形成一些应力。因此,应进行严格的温度控制以限制材料中的热应力。合金元素(Si,Mg)会导致在表面上观察到沉淀,特别是对于6060合金而言。然而,在第二步阳极氧化步骤结束时,可以对所有研究的铝合金获得纳米多孔结构。结果表明,表面上孔的数量密度实际上与所用铝合金无关。然而,孔的六边形分布的程度取决于阳极氧化铝的类型。而且,已经证明了使用在铝合金上生产的纳米多孔阳极氧化铝模板成功制造了Co纳米线阵列,并且讨论了通过钴纳米线阵列均匀填充模板。

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