3D droplet displacement in microfluidic systems by electrostatic actuation

A conducting droplet set on the lower plate of a condenser acquires an electrical charge when subjected to an electrical field. Above a threshold value the electrical force lifts the droplet. If the droplet's charge does not leak away, the droplet moves up to the upper electrode and bounces on...

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Veröffentlicht in:Sensors and actuators 2007-03, Vol.134 (2), p.486-493
Hauptverfasser: Roux, Jean-Maxime, Fouillet, Yves, Achard, Jean-Luc
Format: Artikel
Sprache:eng
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Zusammenfassung:A conducting droplet set on the lower plate of a condenser acquires an electrical charge when subjected to an electrical field. Above a threshold value the electrical force lifts the droplet. If the droplet's charge does not leak away, the droplet moves up to the upper electrode and bounces on it. Coating the upper electrode with a dielectric layer allows the otherwise regular droplet back and forth motion to be controlled. This new idea is applied to a droplet-based microfluidic system which drives droplets by electrowetting on a planar array. In this way additional flexibility is achieved since droplets can be displaced and controlled in the three space dimensions.
ISSN:0924-4247
0250-6874
1873-3069
DOI:10.1016/j.sna.2006.05.012