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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Vacuum-driven fluid manipulation by a piezoelectric diaphragm micropump for microfluidic droplet generation with a rapid system response time
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Vacuum-driven fluid manipulation by a piezoelectric diaphragm micropump for microfluidic droplet generation with a rapid system response time

机译:用快速系统响应时间的微流体液滴产生压电隔膜微泵的真空驱动的流体操纵

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摘要

Recently, we developed a convenient microfluidic droplet generation device based on vacuum-driven fluid manipulation with a piezoelectric diaphragm micropump. In the present study built on our previous work, we investigate the influence of settings applied to the piezoelectric pump, such as peak-to-peak drive voltage (Vp-p) and wave frequency, on droplet generation characteristics. Stepwise adjustments to the drive voltage in +/- 10-Vp-p increments over the range of 200-250 Vp-p during droplet creation revealed that the droplet generation rate could be reproducibly controlled at a specific drive voltage. The droplet generation rate switched within 0.5 s after the input of a new voltage. Although the droplet generation rate depended on the drive voltage, this setting had almost no influence on droplet size. The frequency over the selected range (50-60 Hz) did not markedly influence the droplet generation rate or droplet size. We show that the current fluid manipulation system can be conveniently used for both droplet generation and for rapid droplet reading, which is required in many microfluidic-based applications.
机译:最近,我们开发了一种基于真空驱动的流体操纵的方便微流体液滴生成装置,该流体操纵用压电隔膜微泵。在本研究中建立在我们以前的工作之上,我们研究了应用于压电泵的环境的影响,例如液滴生成特性的峰值峰值驱动电压(VP-P)和波频。在液滴创建期间逐步调整到+/- 10-VP-P的+/- 10-VP-P的增量,显示液滴产生速率可以在特定的驱动电压下可再现地控制。液滴生成速率在输入后开启& 0.5秒后的新电压。液滴产生速率依赖于驱动电压,但该设置几乎没有对液滴尺寸的影响。所选范围(50-60Hz)上的频率没有显着影响液滴产生速率或液滴尺寸。我们表明目前的流体操纵系统可以方便地用于液滴生成和快速液滴读数,这是在许多基于微流体的应用中所需的。

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