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      A Review on Micromixers

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          Abstract

          Microfluidic devices have attracted increasing attention in the fields of biomedical diagnostics, food safety control, environmental protection, and animal epidemic prevention. Micromixing has a considerable impact on the efficiency and sensitivity of microfluidic devices. This work reviews recent advances on the passive and active micromixers for the development of various microfluidic chips. Recently reported active micromixers driven by pressure fields, electrical fields, sound fields, magnetic fields, and thermal fields, etc. and passive micromixers, which owned two-dimensional obstacles, unbalanced collisions, spiral and convergence-divergence structures or three-dimensional lamination and spiral structures, were summarized and discussed. The future trends for micromixers to combine with 3D printing and paper channel were brought forth as well.

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          Most cited references148

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          Chaotic mixer for microchannels.

          It is difficult to mix solutions in microchannels. Under typical operating conditions, flows in these channels are laminar-the spontaneous fluctuations of velocity that tend to homogenize fluids in turbulent flows are absent, and molecular diffusion across the channels is slow. We present a passive method for mixing streams of steady pressure-driven flows in microchannels at low Reynolds number. Using this method, the length of the channel required for mixing grows only logarithmically with the Péclet number, and hydrodynamic dispersion along the channel is reduced relative to that in a simple, smooth channel. This method uses bas-relief structures on the floor of the channel that are easily fabricated with commonly used methods of planar lithography.
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            Miniaturized total chemical analysis systems: A novel concept for chemical sensing

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              Micromixers—a review

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                Author and article information

                Journal
                Micromachines (Basel)
                Micromachines (Basel)
                micromachines
                Micromachines
                MDPI
                2072-666X
                09 September 2017
                September 2017
                : 8
                : 9
                : 274
                Affiliations
                [1 ]Key Laboratory of Agricultural Information Acquisition Technology (Beijing) of Ministry of Agriculture, China Agricultural University, 17 East Qinghua Road, Beijing 100083, China; gaozhe@ 123456cau.edu.cn (G.C.); li_xue@ 123456cau.edu.cn (L.X.); huilinzhang@ 123456cau.edu.cn (H.Z.)
                [2 ]Modern Precision Agriculture System Integration Research Key Laboratory of Ministry of Education, China Agricultural University, 17 East Qinghua Road, Beijing 100083, China
                Author notes
                [* ]Correspondence: jianhan@ 123456cau.edu.cn ; Tel.: +86-10-6273-7599
                Article
                micromachines-08-00274
                10.3390/mi8090274
                6189760
                30400464
                e4b58907-ef2a-4702-957c-21d979ce583f
                © 2017 by the authors.

                Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license ( http://creativecommons.org/licenses/by/4.0/).

                History
                : 07 August 2017
                : 01 September 2017
                Categories
                Review

                passive micromixer,active micromixer,microfluidic mixing,microfluidic device

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