Fetzer R, Jacobs K
Department of Experimental Physics, Saarland University, D-66041 Saarbrücken, Germany.
Langmuir. 2007 Nov 6;23(23):11617-22. doi: 10.1021/la701746r. Epub 2007 Oct 6.
Slippage of Newtonian liquids in the presence of a solid substrate is a newly found phenomenon, the origin of which is still under debate. In this article, we present a new analysis method to extract the slip length. Enhancing the slip of liquids is an important issue for microfluidic devices that demand for high throughput at low pumping power. We study the velocity of short-chained liquid polystyrene (PS) films dewetting from nonwettable solid substrates. We show how the dynamics of dewetting is influenced by slippage, and we compare the results of two types of substrates that give rise to different slip lengths. As substrates, Si wafers that have been coated with octadecyltrichlorosilane (OTS) or dodecyltrichlorosilane (DTS) were used. Our results demonstrate that the dewetting velocity for PS films on DTS is significantly larger than on OTS and that this difference originates from the different slip lengths of the liquid on top of the two surfaces. For PS films of thickness between 130 and 230 nm, we find slip lengths between 400 nm and 6 microm, depending on substrate and temperature.
牛顿流体在固体基底存在时的滑移是一种新发现的现象,其起源仍在争论之中。在本文中,我们提出了一种提取滑移长度的新分析方法。对于需要在低泵浦功率下实现高通量的微流体装置而言,增强流体的滑移是一个重要问题。我们研究了短链液体聚苯乙烯(PS)薄膜从不可润湿固体基底上脱湿的速度。我们展示了脱湿动力学是如何受到滑移影响的,并比较了两种产生不同滑移长度的基底的结果。作为基底,使用了涂有十八烷基三氯硅烷(OTS)或十二烷基三氯硅烷(DTS)的硅片。我们的结果表明,PS薄膜在DTS上的脱湿速度明显大于在OTS上的脱湿速度,且这种差异源于两种表面上液体的不同滑移长度。对于厚度在130至230纳米之间的PS薄膜,我们发现滑移长度在400纳米至6微米之间,这取决于基底和温度。