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通过铝的脉冲阳极氧化对纳米多孔阳极氧化铝进行结构工程。

Structural engineering of nanoporous anodic aluminium oxide by pulse anodization of aluminium.

作者信息

Lee Woo, Schwirn Kathrin, Steinhart Martin, Pippel Eckhard, Scholz Roland, Gösele Ulrich

机构信息

Max Planck Institute of Microstructure Physics, Weinberg 2, D-06120 Halle, Germany.

出版信息

Nat Nanotechnol. 2008 Apr;3(4):234-9. doi: 10.1038/nnano.2008.54. Epub 2008 Mar 23.

Abstract

Nanoporous anodic aluminium oxide has traditionally been made in one of two ways: mild anodization or hard anodization. The first method produces self-ordered pore structures, but it is slow and only works for a narrow range of processing conditions; the second method, which is widely used in the aluminium industry, is faster, but it produces films with disordered pore structures. Here we report a novel approach termed "pulse anodization" that combines the advantages of the mild and hard anodization processes. By designing the pulse sequences it is possible to control both the composition and pore structure of the anodic aluminium oxide films while maintaining high throughput. We use pulse anodization to delaminate a single as-prepared anodic film into a stack of well-defined nanoporous alumina membrane sheets, and also to fabricate novel three-dimensional nanostructures.

摘要

传统上,纳米多孔阳极氧化铝是通过两种方法之一制备的:温和阳极氧化或硬质阳极氧化。第一种方法能产生自有序的孔结构,但速度慢且仅适用于狭窄的加工条件范围;第二种方法在铝工业中广泛使用,速度更快,但它产生的膜具有无序的孔结构。在此,我们报告一种称为“脉冲阳极氧化”的新方法,该方法结合了温和阳极氧化和硬质阳极氧化工艺的优点。通过设计脉冲序列,可以在保持高产量的同时控制阳极氧化铝膜的组成和孔结构。我们使用脉冲阳极氧化将单个制备好的阳极膜分层为一堆定义明确的纳米多孔氧化铝膜片,还用于制造新型三维纳米结构。

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