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Hydrophobic surfaces with tunable dynamic wetting properties via colloidal assembly of silica microspheres and gold nanoparticles

机译:通过二氧化硅微球和金纳米颗粒的胶体组装,具有可调节动态润湿性能的疏水表面

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摘要

Hierarchically structured surfaces have been fabricated using a simple colloidal bottom-up approach. The substrates exhibit a wide range of wettability properties, expressed by water contact angles ranging from 110 ∘ to 166 ∘ . The liquid–solid adhesive characteristics vary from very sticky to non-sticky, exhibited by very large and negligible sliding angles, respectively. Silica spheres with diameters in the range 130–850 nm comprise the larger length scale entities in the hierarchical superstructures, while gold nanoparticles with diameters 13–45 nm are included as the smaller length scale features. Surfaces are derivatized with suitable chemical agents to render them (super)hydrophobic. Dynamic wetting properties in terms of contact angle hysteresis and sliding angles are discussed in relation to the surface morphology.
机译:已使用简单的胶体自下而上方法制造了层次结构化的表面。基材表现出广泛的润湿性,用110°至166°的水接触角表示。液固粘合剂的特性从非常粘到不粘不等,分别表现为非常大和可忽略的滑动角。直径在130–850 nm范围内的二氧化硅球体在分层超结构中包含较大的长度尺度实体,而直径13–45 nm的金纳米颗粒则作为较小的长度尺度特征而包含在内。用合适的化学试剂将表面衍生化以使其具有(超)疏水性。讨论了与表面形态有关的接触角滞后和滑动角方面的动态润湿特性。

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