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首页> 外文期刊>Nanotechnology >Wetting behavior and nanotribological properties of silicon nanopatterns combined with diamond-like carbon and perfluoropolyether films
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Wetting behavior and nanotribological properties of silicon nanopatterns combined with diamond-like carbon and perfluoropolyether films

机译:硅纳米图案与类金刚石碳和全氟聚醚薄膜结合的润湿行为和纳米摩擦学性质

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摘要

A large number of silicon (Si) patterns consisting of nanopillars of varying diameter and pitch have been fabricated and further coated with diamond-like carbon (DLC) and perfluoropolyether (Z-DOL) films. The wetting behavior and nano-adhesion/friction of the patterns are investigated experimentally in relation to the nanostructures and the hydrophobicity of the materials. Measurements of water contact angle illustrate that the patterning-enhanced wettability of the Si flat surface, along with two distinct wettings which are in good agreement with the Wenzel and hemi-wicking states, depended on the value of the pitch-over-diameter ratio. In the case of the coated patterns, three wetting states are observed: the Cassie-Baxter, the Wenzel, and a transition from the Cassie-Baxter into the Wenzel, which varies with regard to the hydrophobic properties of the DLC and Z-DOL. In terms of tribological properties, it is demonstrated that a combination of the nanopatterns and the films is effective in reducing adhesive and frictional forces. In addition, the pitch and diameter of the patterns are found to significantly influence their adhesion/friction behaviors.
机译:已经制造了由不同直径和间距的纳米柱组成的大量硅(Si)图案,并进一步涂覆了类金刚石碳(DLC)和全氟聚醚(Z-DOL)膜。相对于材料的纳米结构和疏水性,实验研究了图案的润湿行为和纳米粘附/摩擦。水接触角的测量表明,Si平面的图案增强的润湿性,以及与Wenzel和半芯吸状态良好吻合的两种不同的润湿性,取决于间距与直径之比的值。在涂覆图案的情况下,观察到三种润湿状态:Cassie-Baxter,Wenzel和从Cassie-Baxter到Wenzel的过渡,这随DLC和Z-DOL的疏水性而变化。就摩擦学性质而言,已证明纳米图案和膜的组合可有效减少粘合力和摩擦力。另外,发现图案的间距和直径显着影响其粘附/摩擦行为。

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