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Cost-effective and reliable sealing method for PDMS (PolyDiMethylSiloxane)-based microfluidic devices with various substrates

机译:具有多种基材的基于PDMS(PolyDiMethylSiloxane)的微流体装置的经济高效且可靠的密封方法

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摘要

A cost-effective and simply handling bonding method using siloxane-based adhesion promoter is introduced to increase the adhesion strength between cured PDMS and various substrates. The working mechanism of adhesion promoters is based on post-cure reaction in PDMS curing and they have similar chemistry compositions with PDMS prepolymers. It is experimentally investigated and proved that the adhesion strength of the resulted interface depends on -SiH group and Pt catalyst in adhesion promoters and molecular structures and polarity of substrates surfaces. By modifying their compositions uniform and perfect adhesion can be obtained for different substrates and meet different markets requirements, e.g., PDMS and glass which could be applied for biology, chemistry and solar cell fields, FR4 for electronics field and copper for electronics and thermal cooling fields, etc. Also, considering the quality and reliability requirements from potential application markets of microfluidic devices an environmental test procedure is summarized and according to the defined procedure, the environmental stability of realized PDMS-based microfluidic devices with different substrates has been tested with the result that they exhibited excellent stabilities and suitability for mass production.
机译:引入了一种经济有效且操作简便的使用硅氧烷基粘合促进剂的粘合方法,以提高固化的PDMS与各种基材之间的粘合强度。助粘剂的工作机理是基于PDMS固化中的后固化反应,它们的化学组成与PDMS预聚物相似。通过实验研究,证明了所得界面的粘合强度取决于粘合促进剂中的-SiH基团和Pt催化剂以及基质表面的分子结构和极性。通过改变其成分,可以为不同的基材获得均匀而完美的附着力,并满足不同的市场需求,例如,PDMS和玻璃可用于生物学,化学和太阳能电池领域,FR4可用于电子领域,铜可用于电子和热冷却领域此外,考虑到微流体装置潜在应用市场对质量和可靠性的要求,总结了环境测试程序,并根据定义的程序,对已实现的基于PDMS的具有不同基质的微流体装置的环境稳定性进行了测试,结果他们表现出出色的稳定性和适合大规模生产的能力。

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