Université de Lyon, F-69000, France.
Langmuir. 2010 Apr 6;26(7):5141-6. doi: 10.1021/la9036138.
The control of surface wetting properties to produce robust and strong hydrophobic and oleophobic effects on intrinsically oleophilic surfaces is at the heart of many technological applications. In this paper, we explore the conditions to observe such effects when the roughness of the substrate is of fractal nature and consists of nanofeatures obtained by the ion track etching technique. The wetting properties were investigated using eight different liquids with surface tensions gamma varying from 18 to 72 mN m(-1). While it is observed that all the tested oils readily wet the flat substrates, it is found that the contact angles are systematically exalted on the rough surfaces even for the liquids with very low surface tension. For liquids with gamma > or = 25 mN m(-1) an oleophobic behavior is clearly induced by the nanostructuration. For liquids with gamma < 25 mN m(-1), although the contact angle is enhanced on the nanorough surfaces, it conserves its oleophilic character (theta* lower than 90 degrees). Moreover, our experiments show that even in the case of hexane, liquid having the lowest surface tension, the homogeneous wetting (Wenzel state) is never reached. This high resistance to liquid impregnation is discussed within the framework of recent approaches explaining the wetting properties of superoleophobic surfaces.
控制表面润湿性,在固有亲油表面上产生稳定且强疏油和疏水性,这是许多技术应用的核心。本文研究了当基底粗糙度具有分形性质且由离子刻蚀技术获得的纳米结构组成时,观察到这种效应的条件。使用表面张力γ从 18 到 72 mN m(-1) 的 8 种不同液体研究了润湿特性。虽然观察到所有测试的油都很容易润湿平整的基底,但发现即使对于表面张力非常低的液体,在粗糙表面上接触角也会系统升高。对于γ≥25 mN m(-1)的液体,纳米结构化明显诱导了疏油性。对于γ<25 mN m(-1)的液体,尽管纳米粗糙表面上的接触角增强,但仍保持其亲油性(θ*小于 90 度)。此外,我们的实验表明,即使对于表面张力最低的液体正己烷,也从未达到均匀润湿(Wenzel 状态)。在解释超疏油表面润湿特性的最新方法框架内,讨论了这种对液体浸渍的高阻力。