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首页> 外文期刊>Lab on a chip >Effects of the cell geometry and operating parameters on the performance of an external contactless conductivity detector for microchip electrophoresis
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Effects of the cell geometry and operating parameters on the performance of an external contactless conductivity detector for microchip electrophoresis

机译:单元的几何形状和操作参数对用于微芯片电泳的外部非接触式电导检测器性能的影响

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摘要

Quantitative data on the effect of the electrode geometry on the signal strength and the signal-to-noise ratio is given.The measurements are affected by the unavoidable presence of stray capacitance.Best results are achieved for short and narrow electrodes arranged in an antiparallel configuration and separated by a minimal gap,which determines the dimensions of the actual detection volume.Limits of detection between 150 and 250 mug l~(-1) and separation efficiencies from 13 000 to 17 000 theoretical plates were achieved for six inorganic cations (NH_4~+,K~+,Ca~(2+),Na~+,Mg~(2+)and Li~+) with electrodes of 1 mm width and a detection gap of 0.5 mm (separation channel length:7.5 cm) when operating the detector at 20 V_(pp) and 500 kHz.The analyses of all major inorganic cations in tap and rain water samples were demonstrated for the first time in microchip electrophoresis with contactless conductivity detection.
机译:给出了电极几何形状对信号强度和信噪比的影响的定量数据,测量结果不可避免地会产生杂散电容,对于以反平行配置排列的短电极和窄电极可获得最佳结果六个无机阳离子(NH_4 〜+,K〜+,Ca〜(2 +),Na〜+,Mg〜(2+)和Li〜+),电极宽度为1毫米,检测间隙为0.5毫米(分离通道长度:7.5厘米)当在20 V_(pp)和500 kHz频率下运行检测器时,首次在非接触电导检测的微芯片电泳中证明了自来水和雨水样品中所有主要无机阳离子的分析。

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