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采用胶体光刻和等离子体纳米刻蚀技术制备具有有序分级粗糙度的超双疏到两亲聚合物表面。

From superamphiphobic to amphiphilic polymeric surfaces with ordered hierarchical roughness fabricated with colloidal lithography and plasma nanotexturing.

机构信息

Institute of Microelectronics, NCSR Demokritos, 153 10, Aghia Paraskevi, Attiki, Greece.

出版信息

Langmuir. 2011 Apr 5;27(7):3960-9. doi: 10.1021/la104481p. Epub 2011 Feb 25.

Abstract

Ordered, hierarchical (triple-scale), superhydrophobic, oleophobic, superoleophobic, and amphiphilic surfaces on poly(methyl methacrylate) PMMA polymer substrates are fabricated using polystyrene (PS) microparticle colloidal lithography, followed by oxygen plasma etching-nanotexturing (for amphiphilic surfaces) and optional subsequent fluorocarbon plasma deposition (for amphiphobic surfaces). The PS colloidal microparticles were assembled by spin-coating. After etching/nanotexturing, the PMMA plates are amphiphilic and exhibit hierarchical (triple-scale) roughness with microscale ordered columns, and dual-scale (hundred nano/ten nano meter) nanoscale texture on the particles (top of the column) and on the etched PMMA surface. The spacing, diameter, height, and reentrant profile of the microcolumns are controlled with the etching process. Following the design requirements for superamphiphobic surfaces, we demonstrate enhancement of both hydrophobicity and oleophobicity as a result of hierarchical (triple-scale) and re-entrant topography. After fluorocarbon film deposition, we demonstrate superhydrophobic surfaces (contact angle for water 168°, compared to 110° for a flat surface), as well as superoleophobic surfaces (153° for diiodomethane, compared to 80° for a flat surface).

摘要

采用聚苯乙烯 (PS) 微球胶体光刻技术,在聚甲基丙烯酸甲酯 (PMMA) 聚合物基底上制备有序的、分层的(三级)、超疏水、疏油、超疏油和两亲性表面,然后进行氧等离子体刻蚀-纳米结构化(用于两亲性表面)和可选的随后氟碳等离子体沉积(用于疏油表面)。PS 胶体微球通过旋涂组装。刻蚀/纳米结构化后,PMMA 板具有两亲性,表现出具有微尺度有序柱体的分层(三级)粗糙度,以及颗粒(柱顶)和刻蚀 PMMA 表面上的双尺度(百纳米/十纳米)纳米尺度纹理。微柱的间距、直径、高度和倒圆轮廓由刻蚀工艺控制。根据超疏液表面的设计要求,我们证明了由于分层(三级)和倒圆形貌,疏水性和疏油性得到了增强。在氟碳膜沉积之后,我们展示了超疏水表面(水的接触角为 168°,而平坦表面为 110°)以及超疏油表面(二碘甲烷的接触角为 153°,而平坦表面为 80°)。

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