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Structural engineering of nanoporous alumina by controlling the anodization voltage during the spontaneous current oscillation in hard anodization

机译:通过控制硬质阳极氧化过程中自发电流振荡过程中的阳极氧化电压来控制纳米多孔氧化铝的结构工程

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摘要

In aluminum anodization process the spontaneous current oscillation in certain electrolytes and anodization voltages can occur. The behavior of current in this process is called spontaneous oscillatory current otherwise we call the current behavior as non-oscillatory. The current difference between the spontaneous oscillatory and non-oscillatory conditions is appreciable (more than 50mA/cm~2) whereas to switch from spontaneous oscillatory to non-oscillatory behavior we only need to change the anodization voltage less than 3V. The pore structure of porous anodic alumina film can be modulated by this oscillatory behavior. This effect occurs due to the variation of the anodization current which causes the variation of pore diameter along the pores. But by this procedure it is hard to control the structure of the pore as it is required, because the modulated structure mainly depends on the spontaneous current oscillation. In this article, it is shown that this spontaneous oscillatory behavior can be switched to nonoscillatory condition by changing the anodization voltage. Therefore by switching the anodization voltage between the spontaneous oscillatory and non-oscillatory behaviors, in any time interval, the pore structure of nanopore alumina can be engineered.
机译:在铝阳极氧化工艺中,某些电解质和阳极氧化电压会发生自发电流振荡。在此过程中电流的行为称为自发振荡电流,否则我们将电流行为称为非振荡性。自发振荡和非振荡条件之间的电流差是可观的(大于50mA / cm〜2),而要从自发振荡转换为非振荡行为,我们只需要改变小于3V的阳极氧化电压即可。阳极氧化铝多孔膜的孔结构可以通过这种振荡行为来调节。由于阳极氧化电流的变化而产生这种效果,阳极氧化电流的变化导致沿孔的孔径变化。但是通过该程序很难控制所需的孔结构,因为调制结构主要取决于自发电流振荡。在本文中,表明可以通过更改阳极氧化电压将该自发振荡行为切换为非振荡状态。因此,通过在自发的振荡行为和非振荡行为之间切换阳极氧化电压,可以在任何时间间隔内设计纳米孔氧化铝的孔结构。

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