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Design and application of a self-pumping microfluidic staggered herringbone mixer

机译:自泵浦微流体交错人字形混合器的设计与应用

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摘要

The rapid mixing of reagents is critical to a wide range of chemical and biological reactions but is difficult to implement in microfluidic devices, particularly in capillary action/passive pumping devices or in point-of-need environments. Here, we develop a self-pumping asymmetric staggered herringbone mixer made from only laser-ablated glass and tape. This lab-on-a-chip platform is capable of rapid flow (0.14 mL min(-1), 1 cm s(-1)) and fast mixing ( 10 s) without external forces or pumps and is amenable to the flow of non-aqueous solvents. Furthermore, the degree of mixing and flow rates are easily tunable through the length and depth of the herringbone grooves, and the thickness of the double-sided tape that defines the channel height, respectively. The device utility is demonstrated for chemical and biological assays through the reaction of Ni(II) and DMG in ethanol/water and the enzymatic reaction of o-dianisidine with peroxidase, respectively.
机译:试剂的快速混合对广泛的化学和生物反应至关重要,但难以在微流体装置中实施,特别是在毛细管动作/被动泵装置或需要点的环境中。在这里,我们开发一种仅由激光烧蚀的玻璃和胶带制成的自泵送不对称交错的人字形混合器。这种芯片平台能够快速流动(0.14mL min(-1),1cm s(-1))和快速混合(<10秒),而无需外力或泵,并且可用于流动非水溶剂。此外,混合和流速的程度易于通过人字形槽的长度和深度调谐,以及分别限定通道高度的双面带的厚度。通过Ni(II)和DMG在乙醇/水中的反应和O-Dianisidine与过氧化物酶的酶促反应分别对化学和生物测定进行了证明了该装置用途。

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