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Fabrication of Microfluidic Chips Based on an EHD-Assisted Direct Printing Method

机译:基于EHD辅助直接印刷方法的微流控芯片的制造

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摘要

Microfluidic chips have been widely used in many areas such as biology, environmental monitoring, and micromixing. With the increasing popularity and complexity of microfluidic systems, rapid and convenient approaches for fabricating microfluidic chips are necessary. In this study, a method based on EHD (electrohydrodynamic)-assisted direct printing is proposed. Firstly, the principle of EHD-assisted direct printing was analyzed. The influence of the operating voltage and moving speed of the work table on the width of a paraffin wax model was studied. Then, two kinds of paraffin wax molds for micromixing with channel widths of 120 μm were prepared. A polydimethylsiloxane (PDMS) micromixer was fabricated by replicating the paraffin wax mold, and the micromixing of blue and yellow dye was realized. The results show that EHD-assisted direct printing can be used to make complex microscale structures, which has the potential to greatly simplify the manufacturing process.
机译:微流体芯片已广泛用于许多领域,例如生物学,环境监测和微混合。随着微流体系统的日益普及和复杂,需要快速且方便的方法来制造微流体芯片。在这项研究中,提出了一种基于EHD(电液动力学)辅助直接打印的方法。首先,分析了EHD辅助直接打印的原理。研究了工作电压和工作台移动速度对石蜡模型宽度的影响。然后,制备了两种用于通道宽度为120μm的微混合石蜡蜡模。通过复制石蜡蜡模制造了聚二甲基硅氧烷(PDMS)微混合器,实现了蓝色和黄色染料的微混合。结果表明,EHD辅助的直接印刷可用于制造复杂的微尺度结构,这有可能大大简化制造过程。

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