首页> 外文会议>Proceedings of the 2010 5th IEEE International Conference on Nano/Micro Engineered and Molecular Systems >Continuous separation of non-magnetic particles through negative magnetophoresis inside ferrofluids
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Continuous separation of non-magnetic particles through negative magnetophoresis inside ferrofluids

机译:通过铁磁流体内部的负磁泳连续分离非磁性颗粒

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We present a simple, low-cost, effective, and label-free continuous flow non-magnetic microparticle separation scheme in a microfluidic device under static magnetic fields. The separation process is based on negative magnetophoresis and uses water-based ferrofluids. We exploit the difference in particle sizes to achieve continuous binary separation of fluorescent microparticles with high throughput and efficiency. We demonstrate size-based separation (2.1 μm and 9.9 μm; 2.1 μm and 4.8 μm) of microparticles with close to 100% separation efficiency and a minimum of 10 particles/hour throughput. This new approach opens the door for the development of label-free continuous cellular separation in microfluidic devices with high throughput, efficiency, and reliability.
机译:在静态磁场下,我们在微流体装置中提出了一种简单,低成本,有效和无标记的连续流动非磁性微粒分离方案。分离过程基于负磁性蓄芯,并使用水基铁物质流体。我们利用粒度的差异来实现具有高通量和效率的荧光微粒的连续二进制分离。我们展示了基于尺寸的分离(2.1μm和9.9μm;2.1μm和4.8μm)的微粒,其分离效率接近100%,最小10个颗粒/小时产量。这种新方法打开了在微流体装置中无标签连续蜂窝分离的门,具有高吞吐量,效率和可靠性。

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