Electrical Engineering and Computer Sciences, University of California, Berkeley, California 94720, United States.
Nano Lett. 2011 Aug 10;11(8):3425-30. doi: 10.1021/nl201862d. Epub 2011 Jul 25.
A high-throughput process for nanotexturing of hard and soft surfaces based on the roll-to-roll anodization and etching of low-cost aluminum foils is presented. The process enables the precise control of surface topography, feature size, and shape over large areas thereby presenting a highly versatile platform for fabricating substrates with user-defined, functional performance. Specifically, the optical and surface wetting properties of the foil substrates were systematically characterized and tuned through the modulation of the surface texture. In addition, textured aluminum foils with pore and bowl surface features were used as zeptoliter reaction vessels for the well-controlled synthesis of inorganic, organic, and plasmonic nanomaterials, demonstrating yet another powerful potential use of the presented approach.
提出了一种基于低成本铝箔的卷对卷阳极氧化和刻蚀的高通量硬软表面纳米结构化工艺。该工艺能够精确控制大面积表面形貌、特征尺寸和形状,从而为制造具有用户定义功能性能的基底提供了一个高度通用的平台。具体来说,通过调节表面纹理,系统地表征和调整了箔基底的光学和表面润湿性。此外,还将具有孔和碗状表面特征的纹理化铝箔用作纳升反应容器,以对无机、有机和等离子体纳米材料进行良好控制的合成,展示了所提出方法的另一个强大潜在用途。