Baret Jean-Christophe, Decré Michel, Herminghaus Stephan, Seemann Ralf
Philips Research Laboratories Eindhoven, Prof. Holstlaan 4, 5656 AA Eindhoven, The Netherlands.
Langmuir. 2005 Dec 20;21(26):12218-21. doi: 10.1021/la052228b.
The complex morphologies of liquids on topographically structured substrates are exploited for liquid actuation in open microchannels. The liquid is either confined in prefabricated grooves, thus forming elongated filaments, or gathers in macroscopic drops without invading the grooves, depending on conditions. Using the electrowetting effect, we can reversibly switch between these two states. The length of the filaments is sensitive to the ionic content of the liquid and can be described quantitatively with an electrical model considering the voltage drop along the groove.
利用液体在具有地形结构的基底上的复杂形态,在开放式微通道中实现液体驱动。根据不同条件,液体要么被限制在预制凹槽中,从而形成细长的细丝,要么聚集在宏观液滴中而不侵入凹槽。利用电润湿效应,我们可以在这两种状态之间可逆地切换。细丝的长度对液体的离子含量敏感,并且可以通过考虑沿凹槽的电压降的电学模型进行定量描述。