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Rapid prototyping of polymeric electrophoresis microchips with integrated copper electrodes for contactless conductivity detection

机译:具有集成铜电极的聚合物电泳微芯片的快速原型设计,可用于非接触式电导检测

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A simple and easy approach to produce polymeric microchips with integrated copper electrodes for capacitively coupled contactless conductivity detection (C4D) is described. Copper electrodes were fabricated using a printed circuit board (PCB) as an inexpensive thin-layer of metal. The electrode layout was first drawn and laser printed on a wax paper sheet. The toner layer deposited on the paper sheet was thermally transferred to the PCB surface working as a mask for wet chemical etching of the copper layer. After the etching step, the toner was removed with an acetonitrile-dampened cotton. A poly(ethylene terephthalate) (PET) film coated with a thin thermo-sensitive adhesive layer was used to laminate the PCB plate providing an insulator layer of the electrodes to perform C4D measurements. Electrophoresis microchannels were fabricated in poly(dimethylsiloxane) (PDMS) by soft lithography and reversibly sealed against the PET film. These hybrid PDMS/PET chips exhibited a stable electroosmotic mobility of 4.25 ± 0.04 × 10?4 V cm?2 s?1, at pH 6.1, over fifty runs. Efficiencies ranging from 1127 to 1690 theoretical plates were obtained for inorganic cations...
机译:描述了一种简单且容易的方法来生产具有集成铜电极的聚合物微芯片,以用于电容耦合非接触电导率检测(C4D)。使用印刷电路板(PCB)作为廉价的金属薄层来制造铜电极。首先绘制电极布局,并在蜡纸上激光印刷。沉积在纸张上的墨粉层被热转印到PCB表面,作为用于湿化学蚀刻铜层的掩模。在蚀刻步骤之后,用乙腈湿润的棉除去调色剂。使用涂有薄热敏粘合剂层的聚对苯二甲酸乙二酯(PET)膜层压PCB板,以提供电极的绝缘层以执行C4D测量。电泳微通道是通过软光刻技术在聚二甲基硅氧烷(PDMS)中制成的,并且可逆地密封在PET膜上。这些混合的PDMS / PET芯片在50次运行中在pH 6.1下表现出4.25±0.04×10 -4 V cm -2 s?1的稳定的电渗迁移率。无机阳离子的理论塔板效率为1127至1690。

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