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Microfluidic Mixing: A Review

International Journal of Molecular Sciences · 2011 · Vol. 12(5) · pp. 3263–3287
Chia‐Yen LeeChin‐Lung ChangYaonan WangLung‐Ming Fu

Abstract

The aim of microfluidic mixing is to achieve a thorough and rapid mixing of multiple samples in microscale devices. In such devices, sample mixing is essentially achieved by enhancing the diffusion effect between the different species flows. Broadly speaking, microfluidic mixing schemes can be categorized as either "active", where an external energy force is applied to perturb the sample species, or "passive", where the contact area and contact time of the species samples are increased through specially-designed microchannel configurations. Many mixers have been proposed to facilitate this task over the past 10 years. Accordingly, this paper commences by providing a high level overview of the field of microfluidic mixing devices before describing some of the more significant proposals for active and passive mixers.

Microfluidic and Capillary Electrophoresis ApplicationsMicrofluidic and Bio-sensing TechnologiesInnovative Microfluidic and Catalytic Techniques InnovationMicrofluidicsMicroscale chemistryMixing (physics)MicrochannelSample (material)NanotechnologyMaterials scienceComputer scienceChemistryPhysics

MeSH terms

AcousticsElectricityElectrodesUltrasonicsMicrofluidicsHydrodynamics
Citations
1,078
FWCI
25.35
field-weighted impact
References
92
Percentile
100%
vs. same field & year
Citations per year
References
Micro T-mixer as a rapid mixing micromixer
Sensors and Actuators B Chemical · 2004 · 422 citations
Active microfluidic mixer and gas bubble filter driven by thermal bubble micropump
Sensors and Actuators A Physical · 2002 · 295 citations
Ultrasonic micromixer for microfluidic systems
Sensors and Actuators A Physical · 2001 · 416 citations
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