首页> 外文期刊>European Polymer Journal >Production and analysis of stable microfluidic devices with tunable surface hydrophilicity via the in-situ tertiary-amine catalyzed Michael addition of a multifunctional thiol to a multifunctional acrylate
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Production and analysis of stable microfluidic devices with tunable surface hydrophilicity via the in-situ tertiary-amine catalyzed Michael addition of a multifunctional thiol to a multifunctional acrylate

机译:通过原位叔胺催化迈克尔加入多官能硫醇与多官能硫醇的稳定表面亲水性的稳定微流体装置的生产和分析

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摘要

Poly(dimethylsiloxane) (PDMS) is one of the dominant polymeric hydrophobic materials that has been widely used in microfluidic devices. Here, we employed amine-catalyzed thiol-acrylate chemistry with hydrophilic and fluorinated acrylates to produce a wide range of stable hydrophilic materials without use of expensive instrumentation or complicated techniques to activate surfaces. The process involved the Michael addition of a secondary amine to a multifunctional acrylate followed by bulk modification of the polymer network with monofunctional acrylates. The surface energies of the bulk modified thiol-acrylate thermoset materials were more stable and tunable than the surface energies of physically/chemically treated PDMS. The surface energies of these microfluidics devices were programmed to have water contact angles ranging from highly hydrophilic (similar to 11 degrees) to slightly hydrophilic (similar to 85 degrees). A complete microfluidic device was fabricated illustrating the potential material as an alternative of PDMS to be used as microfluidics devices.
机译:聚(二甲基硅氧烷)(PDMS)是已广泛用于微流体装置的主要聚合物疏水材料之一。在此,我们使用亲水和氟化丙烯酸酯的胺催化的硫醇 - 丙烯酸酯化学,以产生各种稳定的亲水材料,而无需使用昂贵的仪器或复杂的技术来激活表面。该方法涉及迈克尔向多官能丙烯酸酯中加入仲胺,然后用单官能丙烯酸酯对聚合物网络进行体积修饰。本体改性的硫醇 - 丙烯酸酯热固性材料的表面能比物理/化学处理的PDMS的表面能更稳定和可调谐。这些微流体装置的表面能被编程为具有从高度亲水(类似于11度)的水接触角,以稍微亲水(类似于85度)。制造完整的微流体装置,其示出了潜在的材料,作为用于用作微流体装置的PDMS的替代方案。

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