Development of a mobile analytical chemistry workstation using a silicon electrochromatography microchip and capacitively coupled contactless conductivity detector

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Abstract

Capillary electrochromatography (CEC) is a separation technique that hybridizes liquid chromatography (LC) and capillary electrophoresis (CE). The selectivity offered by LC stationary phase results in rapid separations, high efficiency, high selectivity, minimal analyte and buffer consumption. Chip-based CE and CEC separation techniques are also gaining interest, as the microchip can provide precise on-chip control over the experiment. Capacitively coupled contactless conductivity detection (C4 D) offers the contactless electrode configuration, and thus is not in contact with the solutions under investigation. This prevents contamination, so it can be easy to use as well as maintain. This study investigated a chip-based CE/CEC with C4 D technique, including silicon-based microfluidic device fabrication processes with packaging, design and optimization. It also examined the compatibility of the silicon-based CEC microchip interfaced with C4 D. In this paper, the authors demonstrated a nanofabrication technique for a novel microchip electrochromatography (MEC) device, whose capability is to be used as a mobile analytical equipment. This research investigated using samples of potassium ions, sodium ions and aspirin (acetylsalicylic acid).

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APA

Wang, Y., Cao, X., Messina, W., Hogan, A., Ugwah, J., Alatawi, H., … Moore, E. (2021). Development of a mobile analytical chemistry workstation using a silicon electrochromatography microchip and capacitively coupled contactless conductivity detector. Micromachines, 12(3), 1–12. https://doi.org/10.3390/mi12030239

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