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Rapid Prototyping of 2D Glass Microfluidic Devices Based on Femtosecond Laser Assisted Selective Etching Process

机译:基于飞秒激光辅助选择性蚀刻工艺的2D玻璃微流体装置的快速原型设计

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Microfluidics technology that deals with small liquid samples and reagents within micro-scale channels has been widely applied in various aspects of biological, chemical, and life-scientific research. For fabricating microfluidic devices, a silicon-based polymer, PDMS (Polydimethylsiloxane), is widely used in soft lithography, but it has several drawbacks for microfluidic applications. Glass has many advantages over PDMS due to its excellent optical, chemical, and mechanical properties. However, difficulties in fabrication of glass microfluidic devices that requires multiple skilled steps such as MEMS technology taking several hours to days, impedes broad application of glass based devices. Here, we demonstrate a rapid and optical prototyping of a glass microfluidic device by using femtosecond laser assisted selective etching (LASE) and femtosecond laser welding. A microfluidic droplet generator was fabricated as a demonstration of a microfluidic device using our proposed prototyping. The fabrication time of a single glass chip containing few centimeter long and complex-shaped microfluidic channels was drastically reduced in an hour with the proposed laser based rapid and simple glass micromachining and hermetic packaging technique.
机译:在微尺度通道内涉及小型液体样品和试剂的微流体技术已广泛应用于生物,化学和生命科学研究的各个方面。为了制造微流体装置,硅基聚合物,PDMS(聚二甲基硅氧烷)广泛用于软光刻,但它具有微流体应用的几个缺点。由于其优异的光学,化学和机械性能,玻璃具有对PDMS的许多优点。然而,在需要几小时到几个小时的情况下需要多个技术步骤的玻璃微流体装置的困难地阻碍了基于玻璃的装置的广泛应用。在这里,我们通过使用飞秒激光辅助选择性蚀刻(Lase)和飞秒激光焊接来展示玻璃微流体装置的快速和光学原型。使用我们提出的原型设计制造微流体液滴发生器作为微流体装置的示范。含有少数厘米长而复杂的微流体通道的单个玻璃芯片的制造时间在一个小时内随着基于激光和简单的玻璃微机械线和密封包装技术的一个小时大大降低。

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