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Design and fabrication of magnetically functionalized flexible micropillar arrays for rapid and controllable microfluidic mixing

机译:磁性功能化柔性微柱阵列的设计和制造,用于快速可控的微流体混合

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摘要

Magnetically functionalized PDMS-based micropillar arrays have been successfully designed, fabricated and implanted for controllable microfluidic mixing. The arrangement of PDMS micropillar arrays inside the microchannel can be flexibly controlled by an external magnetic field. As a consequence, the flow fields inside the microchannel can be regulated at will via magnetic activation conveniently. When a microchannel is implanted with such micropillar arrays, two microstreams can be mixed easily and controllably upon the simple application of an on/off magnetic signal. Mixing efficiencies based on micropillar arrays with different densities were investigated and compared. It was found that micropillar arrays with higher density (i.e. smaller pillar pitch) would render better mixing performance. Our microfluidic system is capable of generating highly reproducible results within many cycles of mixingon-mixing conversion. We believe that the simple mixing-triggering method together with rapid and controllable mixing control will be extraordinarily valuable for various biological or chemical applications in the future.
机译:已经成功设计,制造和植入了基于磁性功能化PDMS的微柱阵列,以实现可控的微流体混合。 PDMS微柱阵列在微通道内部的布置可以通过外部磁场灵活控制。结果,可以通过磁激活方便地调节微通道内部的流场。当用这种微柱阵列植入微通道时,在简单地施加开/关磁信号时,可以容易且可控地混合两个微流。研究和比较了基于不同密度的微柱阵列的混合效率。已经发现具有较高密度(即较小的柱间距)的微柱阵列将提供更好的混合性能。我们的微流体系统能够在许多混合/非混合转化循环中产生高度可重复的结果。我们相信,简单的混合触发方法以及快速和可控的混合控制将对未来的各种生物或化学应用特别有价值。

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