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首页> 外文期刊>Applied Surface Science >Study on hierarchical structured PDMS for surface super-hydrophobicity using imprinting with ultrafast laser structured models
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Study on hierarchical structured PDMS for surface super-hydrophobicity using imprinting with ultrafast laser structured models

机译:利用超快激光结构化模型的压印研究表面超疏水性的​​分层结构化PDMS

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摘要

We report a simple and inexpensive method for producing super-hydrophobic surfaces through direct replication of microano-structures on polydimethylsiloxane (PDMS) from a replication master prepared by ultrafast-laser texturing process. Gratings were obtained on 304L stainless steel plate using picosecond laser ablation. It has been used as a master with grating areas of different structural features. PDMS negative replica was prepared from the masters, and PDMS positive replica was prepared from the negative replica thereafter. Wettability of samples of the steel master, negative and positive replicas was distinguished using the apparent contact angle (CA) of water drop. Relationships between the CAs on three kinds of samples and structural features were presented. Super-hydrophobic behavior with self-cleaning, exhibited by a water contact angle of 164.5 degrees and sliding angle of 8.44 degrees, was observed on the PDMS negative replica surface. The negative and positive replicas were sputtered on gold films, which were used to metalized PDMS and eliminate the submicronano-structures in hierarchical structures. Results prove that submicroano-structures of hierarchical structures enhance the hydrophobicity of material surface remarkably. This replication method can be applied for large scale production of microano textured super-hydrophobic surfaces for commercial applications. (C) 2015 Elsevier B.V. All rights reserved.
机译:我们报告了一种简单而廉价的方法,可通过从超快激光纹理化工艺制备的复制母版直接复制聚二甲基硅氧烷(PDMS)上的微/纳米结构来生产超疏水表面。使用皮秒激光烧蚀在304L不锈钢板上获得光栅。它已被用作具有不同结构特征的光栅区域的母版。从母版制备PDMS阴性副本,然后从阴性副本制备PDMS阳性副本。使用水滴的表观接触角(CA)来区分钢制母版,负片和正片的样品的润湿性。提出了三种样品的CAs与结构特征之间的关系。在PDMS负副本表面上观察到具有自清洁的超疏水行为,表现为水接触角为164.5度,滑动角为8.44度。将负片和正片复制品溅射到金膜上,然后将其用于金属化PDMS并消除分层结构中的亚微米/纳米结构。结果证明,分层结构的亚微米/纳米结构显着提高了材料表面的疏水性。该复制方法可用于大规模生产用于商业应用的微/纳米织构的超疏水表面。 (C)2015 Elsevier B.V.保留所有权利。

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