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A reliable method for bonding polydimethylsiloxane (PDMS) to polymethylmethacrylate (PMMA) and its application in micropumps

机译:将聚二甲基硅氧烷(PDMS)与聚甲基丙烯酸甲酯(PMMA)结合的可靠方法及其在微型泵中的应用

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摘要

Poly(methylmethacrylate) (PMMA) attracts growing interest in microfluidics research community due to its low cost, high transparency, good mechanical and chemical properties. The more flexible polydimethylsiloxane (PDMS) is well suited for pneumatic actuation. However, PDMS is permeable to gases and absorbs molecules from the sample liquids. Combining PMMA with PDMS would allow a microfluidic device to utilize advantages of both materials. Bonding PMMA to PDMS is a critical step for this hybrid approach. In this paper, we present a simple, fast and reliable technique for bonding PMMA to PDMS. A 25 孠thick adhesive film (ARclearptically clear adhesive 8154, Adhesive Research, Glen Rock, PA USA) was laminated onto a clean PMMA surface. Subsequently, pre-cured PDMS mixture was spin coated onto the adhesive film. After curing, the adhesive and the PDMS layer form a hybrid membrane. The bonding quality and the strength of the PDMS/adhesive membrane was tested using a precision pressure source. A peristaltic micropump was fabricated by bonding a PDMS part with microchannels to the PDMS/PMMA part. The PDMS/adhesive membrane acts as the pneumatic actuator for the micropump. Pressurized air was switched to the three pneumatic actuators by solenoid valves and control electronics. The micropumps can achieve a flow rate as high as 96 嬯min. The techniques reported in this paper allow the integration of microfluidic components made of both PMMA and PDMS in a single device.
机译:聚甲基丙烯酸甲酯(PMMA)由于其低成本,高透明性,良好的机械和化学性能,在微流体研究界引起了越来越多的兴趣。更具柔韧性的聚二甲基硅氧烷(PDMS)非常适合气动执行。但是,PDMS可以透过气体,并从样品液体中吸收分子。将PMMA与PDMS结合使用可使微流体设备充分利用两种材料的优势。将PMMA粘合到PDMS是此混合方法的关键步骤。在本文中,我们提出了一种将PMMA粘合到PDMS的简单,快速和可靠的技术。将25微米厚的胶粘膜(AR透明胶粘剂8154,Adhesive Research,美国宾夕法尼亚州格伦罗克)层压到干净的PMMA表面上。随后,将预固化的PDMS混合物旋涂到粘合剂膜上。固化后,粘合剂和PDMS层形成混合膜。使用精密压力源测试了PDMS /粘合膜的粘合质量和强度。通过将带有微通道的PDMS部件粘结到PDMS / PMMA部件上,制造出蠕动微泵。 PDMS /粘合膜充当微型泵的气动执行器。通过电磁阀和控制电子装置将压缩空气切换到三个气动执行器。微型泵可实现高达96嬯min的流速。本文报道的技术允许将由PMMA和PDMS制成的微流体组件集成到单个设备中。

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