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Rapid Prototyping of Soft Lithography Masters for Microfluidic Devices Using Dry Film Photoresist in a Non-Cleanroom Setting

机译:在非洁净室环境中使用干膜光刻胶对用于微流控设备的软光刻母版进行快速原型制作

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摘要

Fabrication of microfluidic devices by soft lithography is by far the most popular approach due to simplicity and low cost. In this approach PDMS (polydimethylsiloxane) is cast on a photoresist master to generate replicas that are then sealed against glass slides using oxygen plasma. In this work, we demonstrated fabrication of soft photolithography masters using lamination of ADEX dry film as an alternative to the now classic SU-8 resist masters formed by spin coating. Advantages of using ADEX dry film include the easily-achievable uniform thickness without edge bead; simplicity of the process with significant time savings due to non-sticky nature of the film; and fewer health concerns due to less toxic developing solution and antimony-free composition. As we demonstrate, the process can be performed in a low-cost improvised fabrication room in ambient light, in place of a conventional yellow-light cleanroom environment. We believe this approach holds the promise of delivering state-of-the-art microfluidic techniques to the broad field of biomedical and pharmaceutical research.
机译:由于简单和低成本,通过软光刻法制造微流体装置是迄今为止最受欢迎的方法。在这种方法中,将PDMS(聚二甲基硅氧烷)浇铸在光刻胶原版上以生成复制品,然后使用氧等离子体将其密封在玻璃载玻片上。在这项工作中,我们演示了使用ADEX干膜层压制作软光刻母版的方法,以替代现在经典的通过旋涂形成的SU-8光刻胶原版。使用ADEX干膜的优势包括容易达到的均匀厚度而没有边缘压痕;由于薄膜的非粘性,简化了工艺,节省了大量时间;由于毒性较小的显影液和不含锑的成分,因此对健康的关注较少。正如我们所演示的,该过程可以在低成本的简易制造室中在环境光下进行,以代替常规的黄光洁净室环境。我们相信这种方法有望为生物医学和药物研究的广泛领域提供最先进的微流体技术。

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