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Integrated Cantilever-Based Flow Sensors with Tunable Sensitivity for In-Line Monitoring of Flow Fluctuations in Microfluidic Systems

机译:灵敏度可调的集成悬臂式流量传感器用于在线监测微流体系统中的流量波动

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摘要

For devices such as bio-/chemical sensors in microfluidic systems, flow fluctuations result in noise in the sensor output. Here, we demonstrate in-line monitoring of flow fluctuations with a cantilever-like sensor integrated in a microfluidic channel. The cantilevers are fabricated in different materials (SU-8 and SiN) and with different thicknesses. The integration of arrays of holes with different hole size and number of holes allows the modification of device sensitivity, theoretical detection limit and measurement range. For an average flow in the microliter range, the cantilever deflection is directly proportional to the flow rate fluctuations in the microfluidic channel. The SiN cantilevers show a detection limit below 1 nL/min and the thinnest SU-8 cantilevers a detection limit below 5 nL/min. Finally, the sensor is applied for in-line monitoring of flow fluctuations generated by external pumps connected to the microfluidic system.
机译:对于微流体系统中的生物/化学传感器等设备,流量波动会在传感器输出中产生噪声。在这里,我们演示了使用集成在微流体通道中的悬臂式传感器在线监测流量波动。悬臂由不同的材料(SU-8和SiN)制成并且具有不同的厚度。具有不同孔尺寸和孔数量的孔阵列的集成允许修改设备灵敏度,理论检测极限和测量范围。对于微升范围内的平均流量,悬臂偏转与微流体通道中的流量波动成正比。 SiN悬臂的检测极限低于1 nL / min,最薄的SU-8悬臂的检测极限低于5 nL / min。最后,该传感器用于在线监测由连接到微流体系统的外部泵产生的流量波动。

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