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Superhydrophobic Polymer Surface with Hierarchical Patterns Fabricated in Hot Imprinting Process

机译:热压印过程中具有分层图案的超疏水聚合物表面

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摘要

Superhydrophobic surfaces have been widely applied to solve environmental issues using their many functions such as drag reduction, oil-water separation and self-cleaning. It is well known that superhydrophobicity of materials can be enhanced by imparting microano hierarchical patterns on its surface. Although several techniques, such as MEMS, coating, and laser ablation, have been suggested to improve superhydrophobicity, they are unsuitable for mass production. To overcome this limitation, a facile fabrication method using hot imprinting process was developed in this study. Hierarchical patterns including micro sinusoidal patterns with discharge craters were formed on the die surface obtained using wire electrical discharge machining. Thermoplastic PTFE and PC polymer surfaces with hierarchical patterns were successfully replicated from the die surface after hot imprinting. In addition, an entangled micro fibril network was observed on the PTFE surface, whereas torn shapes were developed on the PC polymer surface. As a result, the polymer surfaces were found to exhibit superhydrophobicity with a water contact angle > 150 degrees.
机译:超疏水表面已利用其许多功能(例如减阻,油水分离和自清洁)广泛应用于解决环境问题。众所周知,可以通过在其表面上赋予微/纳米分层图案来增强材料的超疏水性。尽管已经提出了几种技术,例如MEMS,涂层和激光烧蚀,以改善超疏水性,但它们不适合大规模生产。为了克服这一局限性,本研究开发了一种使用热压印工艺的简便制造方法。在利用线放电加工获得的模具表面上形成包括带有放电凹坑的微正弦图案的分层图案。热压印后,成功地从模具表面复制具有分层图案的热塑性PTFE和PC聚合物表面。另外,在PTFE表面上观察到缠结的微原纤维网络,而在PC聚合物表面上形成了撕裂的形状。结果,发现聚合物表面在水接触角> 150度时表现出超疏水性。

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