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Superhydrophobic hierarchical surfaces fabricated by anodizing of oblique angle deposited Al-Nb alloy columnar films

机译:斜角沉积Al-Nb合金柱状膜阳极氧化制备的超疏水分层表面

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摘要

A combined process of oblique angle magnetron sputtering and anodizing has been developed to tailor superhydrophobic surfaces with hierarchical morphology. Isolated submicron columns of single-phase Al-Nb alloys are deposited by magnetron sputtering at several oblique deposition angles on a scalloped substrate surface, with the gaps between columns increasing with an increase in the deposition angle from 70° to 110°. Then, the columnar films have been anodized in hot phosphate-glycerol electrolyte to form a nanoporous anodic oxide layer on each column. Such surfaces with submicron-ano-porous structure have been coated with a fluoroalkyl phosphate layer to reduce the surface energy. The porous surface before coating is superhydrophilic with a contact angle for water is less than 10°, while after coating the contact angles are larger than 150°, being superhydrophobic. The beneficial effect of dual-scale porosity to enhance the water repellency is found from the comparison of the contact angles of the submicron columnar films with and without nanoporous oxide layers. The larger submicron gaps between columns are also preferable to increase the water repellency.
机译:已经开发了斜角磁控管溅射和阳极氧化的组合工艺,以定制具有分层形态的超疏水表面。分离的单相Al-Nb合金亚微米柱通过磁控溅射以多个倾斜的沉积角沉积在扇形基底表面上,柱之间的间隙随着沉积角从70°增大到110°而增大。然后,将柱状膜在热磷酸盐-甘油电解质中进行阳极氧化,以在每个柱上形成纳米多孔阳极氧化物层。具有亚微米/纳米孔结构的此类表面已涂有氟代烷基磷酸酯层以降低表面能。涂覆前的多孔表面是超亲水的,与水的接触角小于10°,而涂覆后的接触角大于150°,是超疏水的。通过比较具有和不具有纳米多孔氧化物层的亚微米柱状膜的接触角,发现了双尺度孔隙度提高疏水性的有益效果。柱之间的较大的亚微米间隙对于增加疏水性也是优选的。

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