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Multi-level separation of particles using acoustic radiation force and hydraulic force in a microfluidic chip

机译:使用微流体芯片中的声辐射力和水力多级分离颗粒

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摘要

Combined with acoustic separation and hydraulic separation technology, a microfluidic chip, which can achieve multi-level particle separation, is proposed in this work. The chip uses the sheath flow on both sides to align the mixed particles in the set area (near the side of the channel) of the separation channel. And then, the mixed particles successively pass through the acoustic surface wave and hydraulic action area, which are generated by modulating interdigital transducers and adjusting the flow ratio, respectively, and finally realize multiple particle separation under the acoustic radiation and hydraulic force. The corresponding separation experiments were carried out using polystyrene (PS) microparticles with diameters of 1 mu m, 5 mu m, and 10 mu m, respectively. Moreover, we explored the influence of the peak-to-peak voltage (Vpp) and flow ratio on the PS microparticles separation effect, and the separation effect is optimal at the flowrate in the main channel is 4mm/s, Vpp=25V, A(1)=0.2, A(2)=0.5. Under these conditions, the separation purity of 1 mu m, 5 mu m, and 10 mu m PS microparticles are 95.60%, 91.67%, 93.75%, respectively, and their separation rates are 96.67%, 89.19%, and 96.77%, respectively. The combined multi-level separation chip has the advantages of simple structure, high separation accuracy, high separation efficiency, and the ability to sort multiple particles, which can be applied to chemical analysis, cell sorting, biomedicine.
机译:结合声分离和水力分离技术,提出了一种可以实现多级颗粒分离的微流控芯片。碎屑利用两侧的鞘流使混合颗粒在分离通道的设定区域(靠近通道的侧面)对齐。然后,混合颗粒依次通过声表面波和水力作用区域,分别通过调制叉指式换能器和调节流量比而产生,并最终在声辐射和水力作用下实现多个颗粒分离。使用直径分别为1μm,5μm和10μm的聚苯乙烯(PS)微粒进行了相应的分离实验。此外,我们研究了峰峰电压(Vpp)和流量比对PS微粒分离效果的影响,并且在主通道流速为4mm / s,Vpp = 25V,A时,分离效果最佳。 (1)= 0.2,A(2)= 0.5。在这些条件下,1微米,5微米和10微米PS微粒的分离纯度分别为95.60%,91.67%,93.75%,其分离率分别为96.67%,89.19%和96.77%。 。该组合式多级分离芯片具有结构简单,分离精度高,分离效率高,能够分选多个颗粒的优点,可应用于化学分析,细胞分选,生物医学等领域。

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