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Integrated electrofluidic circuits: pressure sensing with analog and digital operation functionalities for microfluidics

机译:集成电流体电路:具有模拟和数字操作功能的微流体压力感测

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Microfluidic technology plays an essential role in various lab on a chip devices due to its desired advantages. An automated microfluidic system integrated with actuators and sensors can further achieve better controllability. A number of microfluidic actuation schemes have been well developed. In contrast, most of the existing sensing methods still heavily rely on optical observations and external transducers, which have drawbacks including: costly instrumentation, professional operation, tedious interfacing, and difficulties of scaling up and further signal processing. This paper reports the concept of electrofluidic circuits - electrical circuits which are constructed using ionic liquid (IL)-filled fluidic channels. The developed electrofluidic circuits can be fabricated using a well-developed multi-layer soft lithography (MSL) process with polydimethylsiloxane (PDMS) microfluidic channels. Electrofluidic circuits allow seamless integration of pressure sensors with analog and digital operation functions into microfluidic systems and provide electrical readouts for further signal processing. In the experiments, the analog operation device is constructed based on electrofluidic Wheatstone bridge circuits with electrical outputs of the addition and subtraction results of the applied pressures. The digital operation (AND, OR, and XOR) devices are constructed using the electrofluidic pressure controlled switches, and output electrical signals of digital operations of the applied pressures. The experimental results demonstrate the designed functions for analog and digital operations of applied pressures are successfully achieved using the developed electrofluidic circuits, making them promising to develop integrated microfluidic systems with capabilities of precise pressure monitoring and further feedback control for advanced lab on a chip applications.
机译:微流体技术由于其所需的优势而在各种芯片设备实验室中起着至关重要的作用。集成了执行器和传感器的自动化微流体系统可以进一步实现更好的可控性。已经很好地开发了许多微流体驱动方案。相比之下,大多数现有的传感方法仍然严重依赖光学观测和外部换能器,其缺点包括:昂贵的仪器,专业的操作,繁琐的接口以及难以按比例放大和进一步进行信号处理。本文报告了电流体电路的概念,即使用充满离子液体(IL)的流体通道构造的电路。可以使用发达的多层软光刻(MSL)工艺和聚二甲基硅氧烷(PDMS)微流体通道来制造发达的电流体电路。电流体电路可将具有模拟和数字操作功能的压力传感器无缝集成到微流体系统中,并提供电读数以进行进一步的信号处理。在实验中,基于电流体惠斯通电桥电路构建了模拟运算设备,并具有输出的加,减结果。使用电流体压力控制开关构造数字操作(AND,OR和XOR)设备,并输出施加压力的数字操作的电信号。实验结果表明,使用开发的电流体电路已成功实现了施加压力的模拟和数字操作的设计功能,这使其有望开发出集成的微流体系统,该系统具有精确的压力监控功能,并为先进的芯片实验室应用提供了进一步的反馈控制功能。

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