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Microfluidic Modules with Integrated Solid-State Sensors for Reconfigurable Miniaturized Analysis Systems

机译:具有集成固态传感器的微流体模块,用于可重构的小型化分析系统

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The fast and simple fabrication of modular microfluidic devices comprising different fluidic components and configurations that can rapidly be assembled and reconfigured depending on the requirements of a particular application is very attractive. The application of these modular systems as complete analysis systems requires the incorporation of flow-cell modules capable of selectively detecting chemical species. Here, a new magnetic clamping approach is presented that allows both interconnection of microfluidic modules and reversible integration of solid-state sensors. Planar and optically transparent materials are used to easily assess device fluidic performance. Double-sided polyacrylic adhesive layers, sandwiched between two transparent polycarbonate films, are mechanized to produce fluidic structures containing the required inlets and outlets. The latter also include chemically bonded poly(dimethylsiloxane) gaskets for easy leak-free interconnection of the different modules and the incorporation of chemical sensors without adding dead volumes. Microfluidic channels, junctions, mixers and flow cells with solid-stated sensors are thus fabricated. Different microfluidic modules are assembled with the aid of poly(methyl methacrylate) clamping structures containing embedded magnets. By using a magnetic breadboard, complete microfluidic analysis systems can be arranged in a few minutes. Three systems incorporating conductivity, amperometric, or pH sensors are thus assembled and fully characterized to show the advantages of the presented approach for analytical applications.
机译:快速且简单地制造模块化微流体装置,其包括可以根据特定应用的要求而快速组装和重新配置的不同流体部件和构造,这是非常有吸引力的。这些模块化系统作为完整的分析系统的应用需要结合能够选择性检测化学物质的流通池模块。在这里,提出了一种新的电磁钳位方法,该方法既可以实现微流体模块的互连,又可以实现固态传感器的可逆集成。平面和光学透明的材料用于轻松评估设备的流体性能。机械化夹在两个透明聚碳酸酯膜之间的双面聚丙烯酸酯粘合剂层,以产生包含所需入口和出口的流体结构。后者还包括化学键合的聚(二甲基硅氧烷)垫片,可轻松实现不同模块之间的无泄漏互连,并包含化学传感器,而不会增加死体积。因此,制造了带有固态传感器的微流体通道,接头,混合器和流通池。借助于包含嵌入式磁体的聚(甲基丙烯酸甲酯)夹紧结构,可以组装不同的微流体模块。通过使用磁性面包板,可以在几分钟内完成完整的微流体分析系统。因此,组装了三个包含电导率,安培或pH传感器的系统,并对它们进行了全面表征,以显示本方法在分析应用中的优势。

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