State Key Laboratory of Solid Lubrication, Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences, Lanzhou 730000, PR China.
Langmuir. 2010 Mar 2;26(5):3654-8. doi: 10.1021/la9031128.
We have reported an easy means in this paper to imitate the "lotus leaf" by constructing a superhydrophobic surface through a process combining both electroless galvanic deposition and self-assembly of n-octadecanethiol. Superhydrophobicity with a static water contact angle of about 169 +/- 2 degrees and a sliding angle of 0 +/- 2 degrees was achieved. Both the surface chemical compositions and morphological structures were analyzed. We have obtained a feather-like surface structure, and the thickness of the Ag film is about 10-30 microm. The stability of the superhydrophobic surface was tested under the following three conditions: (1) pH value from 1 to 13; (2) after freezing treatment at -20 degrees C; (3) at ambient temperature. It shows a notable stability in that the contact angle of the sample still remained higher than 150 degrees in different conditions. It can be concluded that our approach can provide an alternative way to fabricate stable superhydrophobic materials.
我们在本文中报道了一种通过结合化学镀和正十八硫醇自组装来模拟“荷叶”的简易方法。通过该方法制备的超疏水表面具有静态水接触角约 169±2 度和滑动角 0±2 度的超疏水性。对表面化学成分和形态结构进行了分析。我们获得了一种羽毛状的表面结构,Ag 膜的厚度约为 10-30 微米。在以下三种条件下测试了超疏水表面的稳定性:(1)pH 值从 1 到 13;(2)在-20°C 的冷冻处理后;(3)在环境温度下。结果表明,该样品在不同条件下的接触角仍保持在 150 度以上,具有显著的稳定性。可以得出结论,我们的方法可以为制备稳定的超疏水材料提供一种替代途径。