Microsystem Technology, KTH Royal Institute of Technology, Osquldasväg 10, SE-10044, Stockholm, Sweden.
Lab Chip. 2011 Sep 21;11(18):3136-47. doi: 10.1039/c1lc20388f. Epub 2011 Aug 1.
In this article we introduce a novel polymer platform based on off-stoichiometry thiol-enes (OSTEs), aiming to bridge the gap between research prototyping and commercial production of microfluidic devices. The polymers are based on the versatile UV-curable thiol-ene chemistry but takes advantage of off-stoichiometry ratios to enable important features for a prototyping system, such as one-step surface modifications, tuneable mechanical properties and leakage free sealing through direct UV-bonding. The platform exhibits many similarities with PDMS, such as rapid prototyping and uncomplicated processing but can at the same time mirror the mechanical and chemical properties of both PDMS as well as commercial grade thermoplastics. The OSTE-prepolymer can be cast using standard SU-8 on silicon masters and a table-top UV-lamp, the surface modifications are precisely grafted using a stencil mask and the bonding requires only a single UV-exposure. To illustrate the potential of the material we demonstrate key concepts important in microfluidic chip fabrication such as patterned surface modifications for hydrophobic stops, pneumatic valves using UV-lamination of stiff and rubbery materials as well as micromachining of chip-to-world connectors in the OSTE-materials.
本文介绍了一种基于非等摩尔比硫醇-烯(OSTE)的新型聚合物平台,旨在弥合微流控器件的研究原型制作和商业生产之间的差距。这些聚合物基于通用的紫外光固化硫醇-烯化学,但利用非等摩尔比来实现原型系统的重要特性,例如一步表面修饰、可调机械性能以及通过直接紫外键合实现无泄漏密封。该平台与 PDMS 具有许多相似之处,例如快速原型制作和简单的处理,但同时可以反映 PDMS 以及商业级热塑性塑料的机械和化学性能。OSTE 预聚物可以使用标准的硅上 SU-8 和台式紫外灯进行浇铸,表面修饰可以使用模板掩模进行精确接枝,而键合只需要单次紫外曝光。为了说明该材料的潜力,我们展示了微流控芯片制造中重要的关键概念,例如用于疏水停止的图案化表面修饰、使用硬橡胶材料的紫外层压的气动阀以及在 OSTE 材料中进行芯片到世界连接器的微加工。