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Bubble-Free Electrokinetic Pumping
Journal article

Bubble-Free Electrokinetic Pumping

Abstract

Bubble-free electroosmotic flow (fr-EOF) of aqueous electrolytes in microfluidic channels with integrated electrodes is demonstrated. Undesirable electrolytic bubble formation is avoided by applying a periodic, zero net charge current to generate a nonzero average potential between the electrodes. Electrokinetic pressure generated in this active segment of the microchannel drives flow upstream and downstream where electric field is absent. Flow rates commensurate with theoretical predictions for EOF driven by a dc voltage equivalent to the average net potential have been measured. By significantly reducing driving potentials and liquid exposure time to strong electric fields, fr-EOF opens the way for fully integrated, versatile micro total analysis systems ($\mu$ TAS).$\hfill{\hbox{[772]}}$

Authors

Selvaganapathy P; Ki Y-SL; Renaud P; Mastrangelo CH

Journal

Journal of Microelectromechanical Systems, Vol. 11, No. 5, pp. 448–453

Publisher

Institute of Electrical and Electronics Engineers (IEEE)

Publication Date

October 1, 2002

DOI

10.1109/jmems.2002.803415

ISSN

1057-7157

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