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Millisecond-order rapid micromixing with non-equilibrium electrokinetic phenomena
- Lee, Seung Jun;
- Kim, Daejoong
WEB OF SCIENCE
24SCOPUS
31초록
We report an active micromixer utilizing vortex generation due to non-equilibrium electrokinetics near micro/nanochannel interfaces. Its design is relatively simple, consisting of a U-shaped microchannel and a set of nanochannels. We fabricated the micromixer just using a two-step reactive ion etching process. We observed strong vortex generation in fluorescent microscopy experiments. The mixing performance was evident in a combined pressure-driven and electroosmotic flows, compared with the case with a pure pressure-driven flow. We characterized the micromixer for several conditions: different applied voltages, ion concentrations, flow rates, and nanochannel widths. The experimental results show that the mixing performance is better with a higher applied voltage, a lower ion concentration, and a wider nanochannel width. We quantified the mixing characteristics in terms of mixing time. The lowest mixing time was 2 milliseconds with the voltage of 230 V and potassium chloride solutions of 0.1 mM. We expect that the micromixer is beneficial in several applications requiring rapid mixing.
키워드
- 제목
- Millisecond-order rapid micromixing with non-equilibrium electrokinetic phenomena
- 저자
- Lee, Seung Jun; Kim, Daejoong
- 발행일
- 2012-05
- 유형
- Article
- 권
- 12
- 호
- 6
- 페이지
- 897 ~ 906