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Microstructured surfaces engineered using biological templates: A facile approach for the fabrication of superhydrophobic surfaces

机译:使用生物模板设计的微结构表面:用于制造超疏水表面的简便方法

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摘要

The fabrication of microstructured surfaces using biological tem- plates was investigated with the aim of exploring of a facile and low cost approach for the fabrication of structured surfaces with superhydrophobic properties. Two soft lithographic techniques, i.e., replica moulding and nano-imprinting, were used to replicate the surfaces of a biological substrate. Leaves of the Agave plant (Agave attenuate), a cost-free biological template, were used as a model of a biosurface with superhydrophobic properties. The replication process was performed using two polymers: an elastomeric polymer, poly(dimethylsiloxane) (PDMS), and a polyurethane (PU) based, UV-curable polymer (NOA 60). In the first replication step, negative polymer replicas of the surface of leaves were fabricated, which were used as masters to fabricate positive polymer replicas by moulding and soft imprinting. The pattern with micro and nanostructures of the surface of the leaf possesses superhydrophobic properties, which was successfully replicated into both polymers. Finally, the positive replicas were coated with a thin gold film and modified with self-assembled monolayers (SAMs) to verify the importance of the surface chemistry on the hydrophobic properties of the fabricated structures. Wetting (contact angle) and structural (light microscopy and scanning electron microscopy) characterization was performed to confirm the hydrophobic properties of the fabricated surfaces (>150°), as well as the precision and reproducibility of the replication process.
机译:为了探索一种简便,低成本的方法来制造具有超疏水特性的结构化表面,对使用生物模板制造微结构化表面进行了研究。两种软光刻技术,即复制模制和纳米压印,被用于复制生物基质的表面。龙舌兰植物的叶子(龙舌兰衰减),一种免费的生物模板,被用作具有超疏水特性的生物表面的模型。使用两种聚合物执行复制过程:弹性体聚合物聚二甲基硅氧烷(PDMS)和聚氨酯(PU)基的可紫外线固化的聚合物(NOA 60)。在第一个复制步骤中,制造了叶子表面的负性聚合物复制品,将其用作母版以通过模制和软压印来制造正性聚合物复制品。叶表面具有微米和纳米结构的图案具有超疏水特性,已成功复制到两种聚合物中。最后,将阳性复制品涂上一层薄金膜,并用自组装单层膜(SAMs)进行修饰,以验证表面化学对所制造结构的疏水性的重要性。进行润湿(接触角)和结构(光学显微镜和扫描电子显微镜)表征,以确认制造表面的疏水性(> 150°),以及复制过程的精度和可重复性。

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    Losic, D.;

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  • 年度 2008
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  • 原文格式 PDF
  • 正文语种 en
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