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Epoxy resin mold and PDMS microfluidic devices through photopolymer flexographic printing plate

机译:通过光敏聚合物柔性版印刷板的环氧树脂模具和PDMS微流体装置

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摘要

Photopolymer flexographic printing plate is a new photopolymeric material used for microdevices fabrication. This work demonstrates that a photopolymer flexographic master mold can be used for the fabrication of PDMS (polydimethylsiloxane) microdevices by a multi-step manufacturing process. The methodology entails three main fabrication steps: (1) a photopolymer flexographic printing plate mold (FMold) is generated by UV exposure through a transparent film, (2) an epoxy resin mold (ERmold) is fabricated by transferring the features of the photopolymer mold and (3) a PDMS microdevice is manufactured from the epoxy resin mold. The characterization of the manufactured PDMS microdevices was performed using scanning electron microscopy (SEM) and profilometry. Results showed high accuracy in the replication of the profiles. To show the feasibility of the fabrication process a microdevice for microdroplet generation was designed, manufactured and tested. Hence, the manufacturing process described in this work provides an easy, robust, and low-cost strategy that facilitates the scaling-up of microfluidic devices without requiring any sophisticated equipment.
机译:光敏聚合物柔性版印刷版是一种用于微器件制造的新型光敏聚合物材料。这项工作表明,光聚合物柔性版印刷主模可用于通过多步制造工艺来制造PDMS(聚二甲基硅氧烷)微器件。该方法需要三个主要的制造步骤:(1)通过紫外线透过透明薄膜产生光聚合物柔性版印刷版模具(FMold),(2)通过转移光聚合物模具的特征来制造环氧树脂模具(ERmold) (3)由环氧树脂模具制造PDMS微器件。使用扫描电子显微镜(SEM)和轮廓测定法对制造的PDMS微型设备进行表征。结果表明,配置文件的复制具有很高的准确性。为了显示制造工艺的可行性,设计,制造和测试了用于产生微滴的微器件。因此,这项工作中描述的制造过程提供了一种简单,稳健且低成本的策略,该策略可促进微流体设备的规模放大,而无需任何复杂的设备。

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