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A Novel Method for Fabricating Double Layers Porous Anodic Alumina in Phosphoric/Oxalic Acid Solution and Oxalic Acid Solution

机译:一种新的磷酸溶液和草酸溶液制造双层多孔阳极氧化铝的方法

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摘要

A novel method for fabricating ordered double layers porous anodic alumina (DL-PAA) with controllable nanopore size was presented. Highly ordered large pore layer with interpore distance of 480 nm was fabricated in phosphoric acid solution with oxalic acid addition at the potential of 195 V and the small pore layer was fabricated in oxalic acid solution at the potential from 60 to 100 V. Experimental results show that the thickness of large pore layer is linearly correlative with anodizing time, and pore diameter is linearly correlative with pore widening time. When the anodizing potential in oxalic acid solution was adjusted from 60 to 100 V, the small pore layers with continuously tunable interpore distance from 142 to 241 nm and pore density from 1.94×109 to 4.89×109 cm−2 were obtained. And the interpore distance and the pore density of small pore layers are closely correlative with the anodizing potential. The fabricated DL-PAA templates can be widely utilized for fabrication of ordered nanomaterials, such as superhydrophobic or gecko-inspired adhesive materials and metal or semiconductor nanowires.
机译:提出了一种具有可控纳米孔尺寸的有序双层多孔阳极氧化铝(DL-PAA)的新方法。高度为480纳米interpore距离排序的大孔层是在与在195 V和小孔层的电位草酸加入磷酸溶液制备在草酸溶液中的电势制造为60〜100V。实验结果表明大孔隙层的厚度与阳极氧化时间线性相关性,并且孔径与孔径加宽时间线性相关。当将草酸溶液中的阳极氧化电位从60〜100V调节时,获得从142至241nm的连续可调谐的内部距离的小孔隙层,孔密度为1.94×109至4.89×109cm-2。并且中间距离和小孔层的孔密度与阳极氧化势密切相关。所制造的DL-PAA模板可以广泛地用于纳米材料有序,例如超疏水或壁虎启发粘合剂材料和金属或半导体纳米线的制造。

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