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Fabrication of novel porous anodic alumina membranes by two-stBP 22hard anodization

机译:双stBP 22硬质阳极氧化制备新型多孔阳极氧化铝膜

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摘要

Porous anodic alumina (PAA) membranes with highly ordered hexagonal cells and a novel pore structure have been fabricated by two-stBP 22hard anodization in a H2SO4-Al-2(SO4)(3)-H2O system at 40 and 50 V, giving average cell diameters of 77 and 96 nm, respectively. There are several tiny pores embedded in each big shallow pore on the top of the membranes, and there is only one pore in one cell at their bottom. The cells on both sides of the membranes present almost the same periodic arrangement. In order to explore the formation of the novel pore structure, PAA membranes fabricated at different current densities (30-200 mA cm(-2)) are obtained by maintaining a constant voltage at 40 V. The experimental results show that the interpore distance is not only dependent on the anodization voltage, but is also influenced by the current density, which means that the pore structure of PAA membranes fabricated by hard anodization can be accurately designed and controlled by adjusting the anodization voltage and current density simultaneously.
机译:通过在40和50 V的H2SO4-Al-2(SO4)(3)-H2O系统中进行两次stBP 22硬质阳极氧化处理,制备了具有高度有序六边形电池和新型孔结构的多孔阳极氧化铝(PAA)膜。单元直径分别为77和96 nm。膜顶部的每个大浅孔中都嵌有几个细孔,一个细胞底部只有一个孔。膜两侧的细胞呈现出几乎相同的周期性排列。为了探索新型孔结构的形成,通过在40 V下保持恒定电压,获得了以不同电流密度(30-200 mA cm(-2))制备的PAA膜。实验结果表明,孔间距为不仅取决于阳极氧化电压,而且还受电流密度的影响,这意味着可以通过同时调整阳极氧化电压和电流密度来精确设计和控制硬阳极氧化制备的PAA膜的孔结构。

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