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通过特氟龙 AF 的自发起皱实现耐用的超疏水表面。

Durable Superhydrophobic Surfaces via Spontaneous Wrinkling of Teflon AF.

机构信息

School of Chemistry, The University of Sydney , Sydney, New South Wales 2006, Australia.

出版信息

ACS Appl Mater Interfaces. 2016 Mar;8(10):6743-50. doi: 10.1021/acsami.5b12165. Epub 2016 Mar 4.

Abstract

We report the fabrication of both single-scale and hierarchical superhydrophobic surfaces, created by exploiting the spontaneous wrinkling of a rigid Teflon AF film on two types of shrinkable plastic substrates. Sub-100 nm to micrometric wrinkles were reproducibly generated by this simple process, with remarkable control over the size and hierarchy. Hierarchical Teflon AF wrinkled surfaces showed extremely high water repellence (contact angle 172°) and very low contact angle hysteresis (2°), resulting in droplets rolling off the surface at tilt angles lower than 5°. The wrinkling process intimately binds the Teflon AF layer with its substrate, making these surfaces mechanically robust, as revealed by macroscale and nanoscale wear tests: hardness values were close to that of commercial optical lenses and aluminum films, resistance to scratch was comparable to commercial hydrophobic coatings, and damage by extensive sonication did not significantly affect water repellence. By this fabrication method the size of the wrinkles can be reproducibly tuned from the nanoscale to the microscale, across the whole surface in one step; the fabrication procedure is extremely rapid, requiring only 2 min of thermal annealing to produce the desired topography, and uses inexpensive materials. The very low roll-off angles achieved in the hierarchical surfaces offer a potentially up-scalable alternative as self-cleaning and drag-reducing coatings.

摘要

我们报告了通过利用两种可收缩塑料基底上的刚性 Teflon AF 薄膜的自发皱缩来制备单尺度和分级超疏水表面。通过这种简单的过程可重复地产生亚 100nm 至微米级的皱纹,并且对尺寸和分级具有显著的控制。分级 Teflon AF 皱缩表面表现出极高的疏水性(接触角为 172°)和极低的接触角滞后(2°),导致液滴在倾斜角度低于 5°时从表面滚落。该皱缩过程将 Teflon AF 层与其基底紧密结合,使这些表面具有机械强度,这通过宏观和纳米尺度的磨损测试得到了证实:硬度值接近商用光学透镜和铝膜的硬度值,耐划伤性可与商用疏水涂层相媲美,并且广泛的超声处理造成的损坏不会显著影响疏水性。通过这种制造方法,皱纹的尺寸可以从纳米级到微尺度在整个表面上一步重复地进行调整;制造过程非常迅速,仅需 2 分钟的热退火即可产生所需的形貌,并且使用廉价的材料。在分级表面上实现的极低滚落角提供了一种潜在的可扩展的自清洁和减阻涂层替代方案。

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