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Electrokinetic optimization of a micromixer for lab-on-chip applications
2012
This paper is concerned with the optimization of an electrokinetic micromixer suitable for Lab-on-Chip and other microfluidic applications. The mixing concept is based on the combination of an alternating electrical excitation applied to a pressure-driven base flow in a meandering microchannel geometry. The electrical excitation induces a secondary electrokinetic velocity component which results in a complex flow field within the meander bends. A mathematical model describing the
doi:10.11588/emclpp.2012.02.11701
fatcat:foscowbki5epzf6uiye5o3oubm