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A Simple Separation Method with a Microfluidic Channel Based on Alternating Current Potential Modulation

机译:基于交流电势调制的微流控通道简单分离方法

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摘要

A simple separation and detection system based on an electrochemical potential modulated microchannel (EPMM) device was developed for the first time. The application of alternating current (AC) potential to the microfluidic separation channel walls, which were composed of screen printed carbon electrodes, resulted in the oscillation and fluctuation of analytes and in the formation of a perfect flat flow front. These events resulted in an increase in the effective concentration and in the fine separation of samples. The performance of the EPMM device was examined through the analysis of endocrine disruptors (EDs) and heavy metal ions (HMIs) as model compounds. The analytical parameters that affected the separation and detection of EDs and HMIs were studied in terms of AC amplitude, AC frequency, flow rate, buffer concentration, pH, detection potential, and temperature. The separation efficiency was evaluated through measurements of the theoretical plate number (N), the retention time, and the half-peak width. Linear calibration plots for the detection of EDs and HMIs were obtained between 0.15 and 250.0 nM (detection limit 86.4 ± 2.9 pM) and between 0.01 and 10.0 nM (detection limit 9.5 ± 0.3 pM), respectively. The new device was successfully demonstrated with authentic and real samples.
机译:首次开发了基于电化学势调制微通道(EPMM)装置的简单分离和检测系统。在丝网印刷的碳电极组成的微流体分离通道壁上施加交流电(AC)会导致分析物的振荡和波动,并形成完美的平坦流动前沿。这些事件导致有效浓度的增加和样品的精细分离。通过分析作为模型化合物的内分泌干扰物(ED)和重金属离子(HMI),检查了EPMM设备的性能。从交流振幅,交流频率,流速,缓冲液浓度,pH,检测电位和温度等方面研究了影响ED和HMI分离和检测的分析参数。通过测量理论塔板数(N),保留时间和半峰宽来评估分离效率。分别在0.15至250.0 nM(检测极限86.4±2.9 pM)和0.01至10.0 nM(检测极限9.5±0.3 pM)之间获得了用于检测ED和HMI的线性校准图。新设备已通过真实和真实的样本成功演示。

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