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Fabrication of a Grounded Electrodes Cell with Capacitively Coupled Contactless Conductivity Detection Technique in a Microchip Capillary Electrophoresis Application

机译:在微芯片毛细管电泳应用中具有电容耦合接触式电导检测技术的接地电极电池的制造

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A novel Microchip Capillary Electrophoresis (MCE) device, for use with Capacitively Coupled Contactless Conductivity Detection (C4D) technique incorporating a 200 nm gold deposited pick-up electrodes on a Pyrex glass wafer is described. The PDMS (Polydimethylsiloxane) microchip was fabricated by the transfer print technique from an etched silicon wafer through a conventional lithography method. The PDMS was sealed by a 100 urn-thick bio-glass, coupled with a gold pick-up electrodes cell. A fully 3d-printed cartridge encloses all the essential parts, including PDMS chip and gold pick-up electrodes. The gold deposited pick-up electrodes cell with a grounded electrode feature were simulated and the results are presented. Preliminary comparison tests with Na ions and Aspirin have been investigated, with the results of the experiments demonstrating significant improvement in the signal/noise ratio with these novel designed MCE devices.
机译:一种新型微芯片毛细管电泳(MCE)装置,用于包括在Pyrex玻璃晶片上的200nm沉积的拾取电极的电容耦合接触式导电检测(C4D)技术。通过传统的光刻方法通过从蚀刻硅晶片的转移印刷技术制造PDMS(聚二甲基硅氧烷)微芯片。 PDM用100瓮厚的生物玻璃密封,与金拾取电极电池偶联。完全3D打印的墨盒包围所有必需零件,包括PDMS芯片和金拾取电极。模拟了具有接地电极特征的金沉积的拾取电极电池,并提出了结果。研究了用Na离子和阿司匹林进行初步比较试验,实验结果表明,使用这些新颖的设计MCE器件的信号/噪声比显着提高。

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