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Highly Fluorinated Methacrylates for Optical 3D Printing of Microfluidic Devices

机译:用于微流体设备光学3D打印的高氟化甲基丙烯酸酯

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摘要

Highly fluorinated perfluoropolyether (PFPE) methacrylates are of great interest for transparent and chemically resistant microfluidic chips. However, so far only a few examples of material formulations for three-dimensional (3D) printing of these polymers have been demonstrated. In this paper we show that microfluidic chips can be printed using these highly fluorinated polymers by 3D stereolithography printing. We developed photocurable resin formulations that can be printed in commercial benchtop stereolithography printers. We demonstrate that the developed formulations can be printed with minimal cross-sectional area of 600 µm for monolithic embedded microfluidic channels and 200 µm for open structures. The printed and polymerized PFPE methacrylates show a good transmittance above 70% at wavelengths between 520–900 nm and a high chemical resistance when being exposed to organic solvents. Microfluidic mixers were printed to demonstrate the great variability of different designs that can be printed using stereolithography.
机译:高度氟化的全氟聚醚(PFPE)甲基丙烯酸酯对于透明且耐化学腐蚀的微流控芯片非常感兴趣。但是,到目前为止,仅几个例子说明了用于这些聚合物的三维(3D)打印的材料配方。在本文中,我们表明可以使用这些高度氟化的聚合物通过3D立体平版印刷技术来印刷微流体芯片。我们开发了可在商业台式立体光刻打印机中印刷的光固化树脂配方。我们证明,所开发的配方可印刷的最小横截面面积对于单片嵌入式微流体通道为600 µm,对于开放结构则为200 µm。印刷和聚合的PFPE甲基丙烯酸酯在520-900 nm之间的波长下具有70%以上的良好透射率,并且在暴露于有机溶剂中时具有很高的耐化学性。印刷了微流体混合器,以展示可以使用立体光刻技术印刷的不同设计的巨大可变性。

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