首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Fabrication of a magnet-assisted alignment device for the amperometric detection of capillary electrophoresis using a carbon nanotube/polypropylene composite electrode
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Fabrication of a magnet-assisted alignment device for the amperometric detection of capillary electrophoresis using a carbon nanotube/polypropylene composite electrode

机译:使用碳纳米管/聚丙烯复合电极制造用于毛细管电泳的安培检测的磁体辅助对准装置

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摘要

A magnet-assisted alignment device was designed and fabricated for the amperometric detection of CE. It mainly consisted of a magnet-containing electrode holder, a capillary-based microdisc detection electrode, a detection cell, and a micrometer adjuster. To demonstrate the feasibility and performance of the alignment device, it was used in combination with a carbon nanotube/polypropylene (CNT/PP) composite electrode for the determination of p-phenylenediamine, m-aminophenol, and m-dihydroxybenzene in commercial hair dye by CE. The CNT-based electrode was fabricated by packing a melt mixture of CNTs and PP in a piece of fused silica capillary under heat, offering significantly lower operating potentials, substantially enhanced signal-to-noise characteristics, and high resistance to surface fouling. Because magnetic force was employed to move the detection electrode, the alignment system was significantly simplified. It is characterized by simple design and fabrication, high alignment reproducibility, reduced alignment time, and low cost. Both the alignment device and the CNT/PP composite electrode should find a wide range of applications in microchip CE, flowing injection analysis, and other microfluidic analysis systems.
机译:设计并制造了一种用于电磁安培检测的电磁辅助对准装置。它主要由含磁体的电极支架,毛细管微盘检测电极,检测池和千分尺调节器组成。为了证明该对准装置的可行性和性能,将其与碳纳米管/聚丙烯(CNT / PP)复合电极结合使用,可通过以下方法测定商用染发剂中的对苯二胺,间氨基苯酚和间二羟基苯CE。 CNT基电极是通过在加热下将CNT和PP的熔融混合物填充在一块熔融石英毛细管中制成的,具有较低的工作电势,显着增强的信噪比特性和较高的表面抗污性。由于采用了磁力来移动检测电极,因此大大简化了对准系统。它的特点是设计和制造简单,对准精度高,对准时间减少,成本低。对准装置和CNT / PP复合电极都应在微芯片CE,流动注射分析和其他微流体分析系统中找到广泛的应用。

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