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3D printing of microfluidic devices with embedded sensing electrodes for generating and measuring the size of microdroplets based on contactless conductivity detection

机译:具有嵌入式感应电极的微流体设备的3D打印,用于基于非接触式电导率检测生成和测量微滴的大小

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摘要

This report describes the 3D printing of integrated microfluidic platforms containing microchannels and embedded sensing electrodes for capacitively coupled contactless conductivity detection (C~4D). Sensing electrodes were printed on poly(lactic acid) filament doped with carbon nanotubes and then integrated with fluidic channels printed on acrylonitrile butadiene styrene. The proposed microfluidic chips were explored to generate and measure the size of microdroplets based on C~4D measurements. To the best of our knowledge, this is the first report showing the entire fabrication of an integrated platform by 3D printing as well as its use for measuring the size of droplets. The proof-of-concept was successfully demonstrated by generating oil droplets in an aqueous phase and water droplets in an oil phase. The droplet sizes were estimated based on their residence time within the detection cell in association with the flow velocity. According to the data achieved by C~4D measurements, the length of water droplets decreased from 3.4 ± 0.1 to 2.3 ±0.1 mm when the total flow rate raised from 15 to 55 μLmin~(-1). For oil droplets, length values ranged from 3.6±0.1 to 2.4±0.1 mm at the same flow rate range. The achieved results exhibited an exponential correlation with the data obtained by optical measurements.
机译:该报告介绍了集成微流体平台的3D打印,该平台包含微通道和用于电容耦合非接触电导率检测(C〜4D)的嵌入式感应电极。传感电极印在掺有碳纳米管的聚乳酸丝上,然后与印在丙烯腈丁二烯苯乙烯上的流体通道集成在一起。对提出的微流控芯片进行了研究,以基于C〜4D测量来生成和测量微滴的大小。据我们所知,这是第一份报告,显示了通过3D打印进行的集成平台的整体制造以及其用于测量液滴尺寸的用途。通过在水相中生成油滴并在油相中生成水滴,成功地证明了概念验证。基于液滴在检测池中的停留时间以及流速来估算液滴的大小。根据C〜4D测量获得的数据,当总流量从15μLmin〜(-1)增加时,水滴的长度从3.4±0.1毫米减小到2.3±0.1毫米。对于油滴,在相同的流量范围内,长度值的范围为3.6±0.1到2.4±0.1 mm。所获得的结果与通过光学测量获得的数据显示出指数相关性。

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