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采用恒流阳极氧化法制备的自有序、可控结构纳米多孔膜。

Self-ordered, controlled structure nanoporous membranes using constant current anodization.

作者信息

Lee Kwan, Tang Yun, Ouyang Min

机构信息

Department of Physics and Center for Nanophysics and Advanced Materials, University of Maryland, College Park, Maryland 20742, USA.

出版信息

Nano Lett. 2008 Dec;8(12):4624-9. doi: 10.1021/nl803271c.

Abstract

We report a constant current (CC) based anodization technique to fabricate and control structure of mechanically stable anodic aluminum oxide (AAO) membranes with a long-range ordered hexagonal nanopore pattern. For the first time we show that interpore distance (Dint) of a self-ordered nanopore feature can be continuously tuned over a broad range with CC anodization and is uniquely defined by the conductivity of sulfuric acid as electrolyte. We further demonstrate that this technique can offer new degrees of freedom for engineering planar nanopore structures by fine tailoring the CC based anodization process. Our results not only facilitate further understanding of self-ordering mechanism of alumina membranes but also provide a fast, simple (without requirement of prepatterning or preoxide layer), and flexible methodology for controlling complex nanoporous structures, thus offering promising practical applications in nanotechnology.

摘要

我们报道了一种基于恒流(CC)的阳极氧化技术,用于制造和控制具有长程有序六边形纳米孔图案的机械稳定阳极氧化铝(AAO)膜的结构。我们首次表明,通过恒流阳极氧化,自有序纳米孔特征的孔间距(Dint)可以在很宽的范围内连续调节,并且由作为电解质的硫酸的电导率唯一确定。我们进一步证明,该技术可以通过精细调整基于恒流的阳极氧化工艺,为工程平面纳米孔结构提供新的自由度。我们的结果不仅有助于进一步理解氧化铝膜的自组装机制,还提供了一种快速、简单(无需预图案化或预氧化层)且灵活的方法来控制复杂的纳米多孔结构,从而在纳米技术中具有广阔的实际应用前景。

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