首页> 外文期刊>International Journal of Technology >An Analysis of the Electrolyte Resistivity Effect on the Pore Diameter and Pore Density of Anodic Aluminium Oxide (AAO) Films Produced by Single-Step Anodization
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An Analysis of the Electrolyte Resistivity Effect on the Pore Diameter and Pore Density of Anodic Aluminium Oxide (AAO) Films Produced by Single-Step Anodization

机译:电解质电阻率对单步阳极氧化阳极氧化铝膜孔径和孔密度的影响

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Nanoporous anodic aluminum oxide (AAO) layers were successfully fabricated on aluminum foil through an anodizing process in oxalic acid and mixed electrolytes of sulfuric and oxalic acid. The effect of electrolyte resistivity on the morphology of nanoporous AAO, such as pore diameter and pore density, was investigated. The nanoporous AAO layers‘bmorphology was examined using field emission scanning electron microscopy (FE-SEM) and analyzed using image analysis software. The results showed that anodizing in mixed electrolytes (sulfuric and oxalic acid) produced a much smaller pore diameter and a much higher pore density at lower voltage compared to anodizing in a single oxalic acid. For the anodizing process in oxalic acid, the pore diameters ranged from 14 to 52 nm, and the pore density ranged from 34?106 pores in 500×500 nm2. The anodizing process in the mixed electrolytes resulted in pore diameters within the range of 7?14 nm, and the pore densities were within the range of 211?779 pores in 500×500 nm2. Overall, increasing the electrolyte resistivity within the same solution leads to decreased pore diameter.
机译:通过在草酸和硫酸与草酸混合电解质中进行阳极氧化工艺,在铝箔上成功制备了纳米多孔阳极氧化铝(AAO)层。研究了电解质电阻率对纳米多孔AAO的形态,如孔径和孔密度的影响。使用场发射扫描电子显微镜(FE-SEM)检查了纳米多孔AAO层的形貌,并使用图像分析软件进行了分析。结果表明,与在单一草酸中进行阳极氧化处理相比,在混合电解质(硫酸和草酸)中进行阳极氧化处理可产生更小的孔径和更低的电压下更高的孔密度。在草酸中进行阳极氧化处理时,在500×500 nm2的孔径范围为14至52 nm,孔密度范围为34至106个孔。混合电解质中的阳极氧化过程产生的孔径在7至14 nm范围内,并且在500×500 nm2的孔密度在211至779孔的范围内。总的来说,在相同溶液中增加电解质电阻率会导致孔径减小。

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