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Thin film electro-osmotic pumps for biomicrofluidic applications

机译:用于生物微流体应用的薄膜电渗泵

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摘要

Electro-osmotic flow (EOF) pumps are attractive for fluid manipulation in microfluidic channels. Open channel EOF pumps can produce high pressures and flow rates, and are relatively easy to fabricate on-chip or integrate with other microfluidic or electrical components. An EOF pump design that is conducive to on-chip fabrication consists of multiple small channel arms feeding into a larger flow channel. We have fabricated this type of pump design using a thin film deposition process that avoids wafer bonding. We have evaluated pumps fabricated on both silicon and glass substrates. Consistent flow rate versus electric field were obtained. For the range of 40–400 V, flow rates of 0.19–2.30 μL∕min were measured. Theoretical calculations of pump efficiency were made, as well as calculations of the mechanical power generated by various pump shapes, to investigate design parameters that should improve future pumps.
机译:电渗流(EOF)泵对于微流道中的流体操纵具有吸引力。明渠EOF泵可产生高压和高流速,并且相对容易在芯片上制造或与其他微流体或电子组件集成。有利于芯片制造的EOF泵设计由多个小通道臂馈入较大的流道组成。我们使用避免晶片键合的薄膜沉积工艺制造了这种类型的泵设计。我们评估了在硅和玻璃基板上制造的泵。获得一致的流速与电场的关系。在40–400 V的范围内,测得的流速为0.19–2.30μL∕ min。对泵效率进行了理论计算,并对各种形状的泵产生的机械功率进行了计算,以研究应改进未来泵的设计参数。

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