Cosson Steffen, Aeberli Luc G, Brandenberg Nathalie, Lutolf Matthias P
Laboratory of Stem Cell Bioengineering, Institute of Bioengineering, School of Life Sciences, EPFL, Station 15, Bldg. AI 1106, CH-1015 Lausanne, Switzerland.
Lab Chip. 2015 Jan 7;15(1):72-6. doi: 10.1039/c4lc00848k.
The fabrication of microfluidic devices is often still a time-consuming and costly process. Here we introduce a very simple and cheap microfabrication process based on "razor writing", also termed xurography, for the ultra-rapid prototyping of microfluidic devices. Thin poly(dimethylsiloxane) (PDMS) membranes are spin-coated on flexible plastic foil and cut into user-defined shapes with a bench-top cutter plotter. The PDMS membranes can then be assembled into desirable microdevices via plasma bonding. The plastic foil allows manipulation of exceptionally thin (30-300 μm) PDMS layers and can be readily peeled after fabrication. This versatile technique can be used to produce a wide variety of microfluidic device prototypes within just a few hours.
微流控装置的制造通常仍然是一个耗时且成本高昂的过程。在此,我们介绍一种基于“剃刀书写”(也称为刻写制版术)的非常简单且廉价的微制造工艺,用于微流控装置的超快速原型制作。将聚二甲基硅氧烷(PDMS)薄膜旋涂在柔性塑料箔上,并用台式切割绘图仪切割成用户定义的形状。然后,PDMS薄膜可通过等离子体键合组装成所需的微器件。塑料箔允许对极薄(30 - 300μm)的PDMS层进行操作,并且在制造后可以很容易地剥离。这种通用技术可用于在短短几小时内生产出各种各样的微流控装置原型。