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微流控贴纸

Microfluidic stickers.

作者信息

Bartolo Denis, Degré Guillaume, Nghe Philippe, Studer Vincent

机构信息

Laboratoire de physique et mécanique des milieux hétérogène, PMMH-ESPCI-CNRS UMR 7636-P6-P7, Paris, France.

出版信息

Lab Chip. 2008 Feb;8(2):274-9. doi: 10.1039/b712368j. Epub 2007 Nov 22.

Abstract

We present how to make and assemble micro-patterned stickers (microPS) to construct high performance plastic microfluidic devices in a few minutes. We take advantage of soft UV imprint techniques to tailor the geometry, the mechanical properties, and the surface chemistry of 2D and 3D microfluidic circuits. The resulting microfluidic stickers substantially overcome the actual performance of the very popular PDMS devices for a wide range of applications, while sharing their celebrated fast and easy processing. To highlight the intrinsic advantages of this method, three important applications are detailed: (i) we show that both aqueous and organic droplets can be produced and stored in stickers without any specific surface coating. (ii) We report on the outstanding pressure resistance of the microPS, which open the way to the transport of viscous complex fluids. (iii) Finally, a simple design strategy is proposed to generate complex flow patterns in interconnected stacks of microPS.

摘要

我们展示了如何制作和组装微图案贴纸(microPS),以便在几分钟内构建高性能塑料微流控装置。我们利用软紫外压印技术来定制二维和三维微流控电路的几何形状、机械性能和表面化学性质。所得的微流控贴纸在广泛的应用中大大超越了非常流行的聚二甲基硅氧烷(PDMS)装置的实际性能,同时具备其广为人知的快速且易于加工的特点。为突出该方法的内在优势,详细介绍了三个重要应用:(i)我们表明,无需任何特定表面涂层,水性和有机液滴均可在贴纸中产生并储存。(ii)我们报告了microPS出色的耐压性,这为粘性复杂流体的传输开辟了道路。(iii)最后,提出了一种简单的设计策略,以在相互连接的microPS堆叠中产生复杂的流动模式。

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