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Lab-on-Chip Flow Injection Analysis System without an External Pump and Valves and Integrated with an In Line Electrochemical Detector

机译:无需外部泵和阀且集成在线电化学检测器的片上实验室流动注射分析系统

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摘要

Surface energy in small droplets can be used to drive samples through microchannels. When a sample fluid is spontaneously driven through a solution filled microchannel with liquid droplets on its entry (sample) and exit (reservoir) ports, it is termed as a passive pumping device. A passive pump driven microfluidic system integrated with microfabricated planar electrodes or electrode arrays (e.g., interdigitated electrode arrays or microband electrode arrays) can be considered as a manifold for flow injection analysis without an external pump and injector valve. Factors affecting the passive pump driven flow rate in a polydimethylsiloxane (PDMS)-glass hybrid microfluidic system, including the volume, viscosity, and surface tension of the sample solution and the tilt of the microfluidic channel, are analyzed. By placing 2 (mu)L of hexacyanoferrate (II) solutions at the entry port of the device, peak shaped transients were recorded. The peak heights showed linear dependence on the sample concentrations between 3 X 10~(-7) and 10~(-5) M.
机译:小液滴中的表面能可用于驱动样品通过微通道。当样品流体自发地驱动通过溶液填充的微通道时,在其入口(样品)和出口(储存器)端口上都有液滴,这被称为被动泵送设备。可以将与微型制造的平面电极或电极阵列(例如,叉指电极阵列或微带电极阵列)集成在一起的无源泵驱动微流体系统视为无需外部泵和注入阀就可以进行流动注射分析的歧管。分析了影响聚二甲基硅氧烷(PDMS)-玻璃混合微流体系统中被动泵驱动流速的因素,包括样品溶液的体积,粘度和表面张力以及微流体通道的倾斜度。通过在装置的入口处放置2μL六氰合铁酸盐(II)溶液,记录了峰形瞬态。峰高与样品浓度在3 X 10〜(-7)和10〜(-5)M之间呈线性关系。

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