Microfluidic transport based on direct electrowetting
- 1 July 2004
- journal article
- Published by AIP Publishing in Journal of Applied Physics
- Vol. 96 (1) , 835-841
- https://doi.org/10.1063/1.1739528
Abstract
An integrated microfluidic system was fabricated which functions by deliberately manipulating interfacial tension. A distinctive characteristic of our system is the use of an array of adjacent, elongated, working electrodes and protruding polydimethylsiloxane open-flow channels. Microfluidic transport was realized directly on the bare gold electrode surface in the absence of an additional dielectric layer. By changing the potential of the working electrode to a negative potential, a liquid column could be transported from one end of an elongated working electrode to the other end. Transport of the liquid column could be altered without any valves by switching on the adjacent electrode in a given direction. The flow velocity depended on the applied potential, i.e., the velocity could be altered by deliberate manipulation of the electrode potential. In addition, the flow velocity increased as the dimensions of the flow channel decreased. The applied voltage was less than 2 V, and the power consumption was in the order of tens of μW.This publication has 23 references indexed in Scilit:
- A surface-tension driven micropump for low-voltage and low-power operationsJournal of Microelectromechanical Systems, 2002
- Nanofluidic Bubble Pump Using Surface Tension Directed Gas InjectionAnalytical Chemistry, 2002
- Electrowetting and electrowetting-on-dielectric for microscale liquid handlingSensors and Actuators A: Physical, 2002
- Electrowetting: a recent outbreakCurrent Opinion in Colloid & Interface Science, 2001
- Fluid Control in Multichannel Structures by Electrocapillary PressureScience, 2001
- Electrowetting-based actuation of liquid droplets for microfluidic applicationsApplied Physics Letters, 2000
- Dynamics of electrowetting displaysJournal of Applied Physics, 1981
- An Investigation into the Mechanism of Water Treeing in Polyethylene High-Voltage CablesIEEE Transactions on Electrical Insulation, 1980
- Studies on secondary electrocapillary effectsJournal of Colloid and Interface Science, 1977
- Studies on secondary electrocapillary effects. I. The confirmation of Young—Duprè equationJournal of Colloid and Interface Science, 1973