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A polymeric high-throughput pressure-driven micromixer using a nanoporous membrane

机译:使用纳米多孔膜的聚合物高通量压力驱动微混合器

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This article presents a polymeric high-throughput, pressure-driven nanofluidic mixer utilizing a nanoporous charge-selective Nafion membrane. The device has no movable parts and is fabricated in PMMA by means of laser machining and thermal bonding. Mixing is achieved by strong vortices occurring above the nanoporous membrane when applying an electric field. These vortices are caused by electroconvection in the concentration polarization zone. The mixer is operating at Peclet number as high as 63.5 x 103 allowing rapid mixing at a high throughput. The design and fabrication of the mixer is simple, reproducible, and of low cost. The fabrication approach presented in this article can be easily transferred to roll-to-roll technology for mass fabrication.
机译:本文介绍了一种利用纳米孔电荷选择性Nafion膜的聚合物高通量压力驱动纳米流体混合器。该设备没有可移动部件,并且通过激光加工和热粘合以PMMA制成。当施加电场时,通过在纳米多孔膜上方发生强涡旋来实现混合。这些旋涡是由浓差极化区中的对流引起的。混合器的Peclet数高达63.5 x 103,可实现高产量的快速混合。混合器的设计和制造简单,可重复且成本低廉。本文介绍的制造方法可以轻松地应用于卷对卷技术进行大规模制造。

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