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通过选择性表面改性制备具有可调润湿性的混合表面

Development of Hybrid Surfaces with Tunable Wettability by Selective Surface Modifications.

作者信息

Lee Hyun-Joong, Park Keun

机构信息

Graduate School of Mechanical Design and Robot Engineering, Seoul National University of Science and Technology, Seoul 01811, Korea.

Department of Mechanical System Design Engineering, Seoul National University of Science and Technology, Seoul 01811, Korea.

出版信息

Materials (Basel). 2016 Feb 26;9(3):136. doi: 10.3390/ma9030136.

Abstract

Recent advances in micro/nano technology have driven artificial modifications of surface wettability by mimicking biological surfaces, such as superhydrophobic and water-harvesting surfaces. In this study, surface wettability of polycarbonate (PC) films was modified using various surface treatments: micropatterning using ultrasonic imprint lithography, fluorinate silane coating, and electron beam irradiation. To modify surface wettability selectively in a specified region, these three treatments were performed using profiled masks with the corresponding shapes. Various combinations of these treatments were investigated in terms of wettability changes, by measuring contact angle (CA). The semi-hydrophobic PC film (CA: 89.2°) was modified to create a super- hydrophobic state (CA: 155.9°) by virtue of the selective micropatterning and coating. The electron beam irradiation had an opposite effect, reducing the CA (48.2°), so that the irradiated region was modified to create a hydrophilic state. Two combinations of the proposed surface modifications made it possible to have a great difference in CA on a single surface (107.7°), and to have four different wetting states on a single surface. Various water-drop experiments proved that the developed hybrid surfaces were selectively wettable and showed water-collecting capability.

摘要

微纳技术的最新进展推动了通过模仿生物表面(如超疏水表面和集水表面)来对表面润湿性进行人工修饰。在本研究中,聚碳酸酯(PC)薄膜的表面润湿性通过各种表面处理进行了修饰:使用超声压印光刻进行微图案化、氟硅烷涂层以及电子束辐照。为了在特定区域选择性地修饰表面润湿性,这三种处理使用具有相应形状的异形掩膜进行。通过测量接触角(CA),研究了这些处理的各种组合在润湿性变化方面的情况。借助选择性微图案化和涂层,半疏水PC薄膜(CA:89.2°)被修饰成超疏水状态(CA:155.9°)。电子束辐照则产生相反的效果,降低了接触角(48.2°),使得辐照区域被修饰成亲水状态。所提出的两种表面修饰组合使得在单个表面上的接触角有很大差异(107.7°),并且在单个表面上呈现出四种不同的润湿状态。各种水滴实验证明,所开发的复合表面具有选择性润湿性并表现出集水能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e12b/5456690/8d392b6a0152/materials-09-00136-g001.jpg

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