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规则结构金表面的润湿性。

Wetting of regularly structured gold surfaces.

作者信息

Abdelsalam Mamdouh E, Bartlett Philip N, Kelf Timothy, Baumberg Jeremy

机构信息

School of Chemistry and School of Physics and Astronomy, University of Southampton, Southampton SO17 1BJ, United Kingdom.

出版信息

Langmuir. 2005 Mar 1;21(5):1753-7. doi: 10.1021/la047468q.

Abstract

In this study we report results for a systematic study of the wetting of structured gold surfaces formed by electrodeposition through monolayer templates of close-packed uniform submicrometer spheres. Removal of the template after deposition leaves a regular hexagonal array of sphere segment pores where the depth of the pores and, thus, the topography of the surface are controlled by the thickness of gold deposited through the template. We find that, as the thickness of the porous film increases up to the radius of the pores, the apparent contact angle for water on the surface increases from 70 degrees on the flat surface to more that 130 degrees , and then with increasing thickness above the radius of the pores the apparent contact angle decreases back toward 70 degrees . We show that these changes in the apparent contact angle agree with the model of Cassie and Baxter for nonwetted surfaces even though the gold itself is hydrophilic. We also show that the apparent contact angle is independent of the diameter of the pores over the range 400-800 nm. This is the first reported example showing the change of a hydrophilic surface (theta; < 90 degrees ) into a hydrophobic surface (theta; > 90 degrees ) purely by control of the surface topography. The role of the pore shape and size in stabilizing the nonwetting (Cassie-Baxter) droplet on the surface is discussed.

摘要

在本研究中,我们报告了一项系统性研究的结果,该研究涉及通过紧密堆积的均匀亚微米球体的单层模板进行电沉积形成的结构化金表面的润湿性。沉积后去除模板会留下由球形段孔组成的规则六边形阵列,其中孔的深度以及表面形貌由通过模板沉积的金的厚度控制。我们发现,随着多孔膜厚度增加至孔的半径,水在该表面上的表观接触角从平面上的70度增加到超过130度,然后随着厚度增加超过孔的半径,表观接触角又朝着70度减小。我们表明,尽管金本身是亲水性的,但表观接触角的这些变化与Cassie和Baxter提出的非润湿性表面模型相符。我们还表明,在400 - 800纳米范围内,表观接触角与孔的直径无关。这是首次报道的仅通过控制表面形貌就可将亲水性表面(θ < 90度)转变为疏水性表面(θ > 90度)的示例。文中还讨论了孔的形状和尺寸在稳定表面上的非润湿性(Cassie - Baxter)液滴方面的作用。

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