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A novel electrokinetic micromixer
Conference paper

A novel electrokinetic micromixer

Hsin-Yu Wu and Cheng-Hsien Liu
TRANSDUCERS 2003 - 12th International Conference on Solid-State Sensors, Actuators and Microsystems, Digest of Technical Papers, Vol.1, pp.631-634
2003

Abstract

Actuators Chaos Electrokinetics Fluid flow control Mathematical model Mechanical engineering Microchannel Microfluidics Navier-Stokes equations Numerical simulation
A novel microfluidic mixer based on the modulation of ζ-potential is proposed and demonstrated successfully. In contrast to previous micromixer work from other groups, this micromixer does not need complex three-dimensional serpentine microstructure or external pumps to generate chaotic advection pulsatile flow. The mathematical models for ζ-potential variation, induced pressure distribution, volumetric flow rate, and the velocity profile in a rectangular cross-section microchannel is derived and show the mixing effect of varying ζ-potential. Numerical simulation results utilizing CFD-ACE+ indicate the good mixing efficiency for our micromixer design with asymmetric herringbone electrodes and periodic voltage control. The microfabrication process for our electrokinetic micromixer has been developed successfully. Experimental results demonstrate a great mixing enhancement via our microfluidic mixer. Our electrokinetic micromixer design can induce complex flow fields easily to enhance the mixing effect by appropriate modulations of the ζ-potential. The work reported here considers for the first time temporal/spatial ζ-potential modulation for microfluidic mixer applications.

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