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Control of the spatial distribution of porous alumina micro-domes formed during anodic oxidation

机译:控制阳极氧化过程中形成的多孔氧化铝微孔的空间分布

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摘要

We found that micro-domes of porous alumina are self-assembled during anodic oxidation of an aluminum plate. We investigated the effects of the morphology of the initial aluminum surfaces on the formation of these micro-domes and found that the formation of micro-domes depends on the initial surface roughness of the substrate. We have also achieved spatial control over the distribution of these micro-domes through the use of artificial scratches on the initial surface. The origin of this control is the fact that micro-domes are preferentially formed inside hollow areas formed by the scratch. We investigated the inner structure of the micro-dome by separating it from the substrate. Inside the micro-domes, we observed naho-pore arrays similar to a porous alumina membrane, though the regularity of these pores is slightly worse than for the nano-pores around the micro-dome. These results indicate that the porous alumina micro-domes can be used as microscale nanoporous components.
机译:我们发现多孔氧化铝的微腔在铝板的阳极氧化过程中是自组装的。我们研究了初始铝表面的形态对这些微孔形成的影响,发现微孔的形成取决于基材的初始表面粗糙度。通过在初始表面上使用人工划痕,我们还实现了对这些微圆顶分布的空间控制。该控制的起源是这样的事实,即微圆顶优选地在由划痕形成的中空区域内形成。我们通过将微球与基板分离来研究其内部结构。在微孔内部,我们观察到类似于多孔氧化铝膜的纳霍孔阵列,尽管这些孔的规则性比微圆顶周围的纳米孔稍差。这些结果表明,多孔氧化铝微球可用作微尺度的纳米多孔组分。

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