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Ultrasonic assisted imprint for microfluidic chips

机译:微流体芯片的超声波辅助印记

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摘要

Microfluidic chips are new MEME devices built on several square millimeter substrate to handle microliter or nanoliter fluid, wildly used in the fields of life science and bio-chemical detection, with the advantages of low reagents consuming, high efficiency and low cost. In the highly integrated microfluidic chips, flow sensors are essential parts; however, most traditional flow sensors are not suitable to be integrated into microfluidic chips, because of their complex fabrication process and high cost. In this paper, a new thermal sensitive element on polymer foil is fabricated by ultrasonic assistant imprint technology and integrated into microfluidic chip to be an anemometer flow sensor. Then the anemometer flow sensor is experimentally studied under power constant condition and the experiment shows application potential in the microfluidic chips.
机译:微流体芯片是新的MEME器件,内置于几种平方毫米底物上,以处理微升或纳米液体,在生命科学和生物化学检测领域野外使用,具有低试剂的优点,效率高,成本低。 在高度集成的微流体芯片中,流动传感器是必不可少的零件; 然而,由于其复杂的制造过程和高成本,大多数传统流动传感器不适合集成到微流体芯片中。 本文采用超声波助理压印技术制造了一种新的聚合物箔上的热敏元件,并集成到微流体芯片中以成为风速计流量传感器。 然后在功率恒定条件下通过实验研究风速计流量传感器,并且实验显示微流体芯片中的应用势。

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