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Surface-acoustic-wave counterflow micropumps for on-chip liquid motion control in two-dimensional microchannel arrays

机译:用于二维微通道阵列中片上液体运动控制的表面声波逆流微型泵

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摘要

Fully controlled liquid injection and flow in hydrophobic polydimethylsiloxane (PDMS) two-dimensional microchannel arrays based on on-chip integrated, low-voltage-driven micropumps are demonstrated. Our architecture exploits the surface-acoustic-wave (SAW) induced counterflow mechanism and the effect of nebulization anisotropies at crossing areas owing to lateral propagating SAWs. We show that by selectively exciting single or multiple SAWs, fluids can be drawn from their reservoirs and moved towards selected positions of a microchannel grid. Splitting of the main liquid flow is also demonstrated by exploiting multiple SAW beams. As a demonstrator, we show simultaneous filling of two orthogonal microchannels. The present results show that SAW micropumps are good candidates for truly integrated on-chip fluidic networks allowing liquid control in arbitrarily shaped two-dimensional microchannel arrays.
机译:演示了基于片上集成,低压驱动的微型泵的疏水性聚二甲基硅氧烷(PDMS)二维微通道阵列中的液体注射和流量完全受控的方法。我们的体系结构利用了表面声波(SAW)引起的逆流机理,以及由于横向传播的SAW而在交叉区域产生了雾化各向异性。我们表明,通过选择性地激发单个或多个声表面波,流体可以从它们的储层中抽出并向微通道网格的选定位置移动。通过利用多个声表面波束也证明了主要液体流的分离。作为演示者,我们显示了两个正交微通道的同时填充。目前的结果表明,SAW微型泵是真正集成的片上流体网络的良好候选者,从而可以在任意形状的二维微通道阵列中进行液体控制。

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