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Polymer-Based Magnetically Driven Microtool for On-Chip Particle Sorting

机译:用于片上颗粒分选的聚合物基磁驱动微池

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We succeeded in powerful noncontact actuation of magnetically driven microtool (MMT) by magnetizing it and focusing magnetic field in a microfluidic chip. Novelty of this paper is summarized as follows. (1) We employed neodium powder as the main component of MMT. The density of magnetic flux was improved about 100 times larger after magnetization. (2) We fabricated a pair of magnetic sharp needles in the chip by electroplating. MMT was placed between the needles and the density of magnetic flux was improved about 3 times larger. As a result, we succeeded in powerful actuation of MMT in a chip. Drive frequency was improved about 10 times faster (up to 180 Hz). We applied it for sorting of copolymer beads in a chip. Figure 1 shows concept of sorting chip. MMT is put in the microchannel. Figure 2 shows principle of actuation method. The size of the bead was measured by image processing (15 Hz). Moving frequency of the MMT was made higher than the sampling frequency of measurement and secure sorting was achieved.
机译:通过磁化它和聚焦微流体芯片中的磁场,我们成功地成功地对磁驱动微池(MMT)的强大的致动。本文的新颖性总结如下。 (1)我们用Neodium粉末作为MMT的主要成分。磁化后磁通量的密度提高了约100倍。 (2)通过电镀,我们在芯片中制造了一对磁性锋利针。将MMT置于针之间,磁通量的密度提高了约3倍。结果,我们成功地在芯片中强大的MMT启动。驱动频率提高了大约10倍(高达180 Hz)。我们将其应用于芯片中的共聚物珠子进行分选。图1显示了分类芯片的概念。 MMT放入微通道中。图2显示了致动方法的原理。通过图像处理(15Hz)测量珠子的尺寸。 MMT的移动频率高于测量的采样频率,并实现了安全分选。

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