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Fabrication of hierarchically structured superhydrophobic PDMS surfaces by CuO casting

机译:通过CuO铸造制备分层结构的超疏水PDMS表面

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Poly(dimethylsiloxane) (PDMS) is used to define channels for chemical and biological analysis due to its transparency and bio-compatibility. Rendering the channel surface superhydrophobic reduces the effective contact with the channel walls and lowers the needed pressure to push through fluids. This paper reports a novel method to fabricate superhydrophobic PDMS surfaces, with a hierarchical roughness using single-step casting of a patterned cupric oxide (CuO) mold. A structured copper surface with microscale non-communicating roughness is thermally oxidized to generate high aspect-ratio CuO whiskers. Casting PDMS films from the mold creates a microanoscale hierarchical roughness, with the resulting surface exhibiting superhydrophobic characteristics (contact angle > 150° and hysteresis <10°). With reusable large area molds fabricated in a single patterning step, this process is simpler and cheaper than alternatives based on deep reactive ion etching or laser roughening.
机译:聚二甲基硅氧烷(PDMS)具有透明性和生物相容性,因此可用于定义化学和生物分析的通道。使通道表面超疏水会降低与通道壁的有效接触,并降低推动流体通过所需的压力。本文报道了一种新颖的方法来制造超疏水性PDMS表面,该方法通过使用单步铸造图案化氧化铜(CuO)模具来制造具有分级粗糙度的表面。具有微尺度非连通粗糙度的结构化铜表面被热氧化以生成高纵横比的CuO晶须。从模具中浇铸PDMS膜会产生微米/纳米级的分层粗糙度,所得表面显示出超疏水特性(接触角> 150°,磁滞<10°)。通过在单个图案化步骤中制造可重复使用的大面积模具,该方法比基于深度反应离子刻蚀或激光粗糙化的替代方法更简单,更便宜。

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