首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Improving MCE with electrochemical detection using a bubble cell and sample stacking techniques.
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Improving MCE with electrochemical detection using a bubble cell and sample stacking techniques.

机译:使用气泡池和样品堆叠技术通过电化学检测来改善MCE。

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摘要

Two efforts to improve the sensitivity and limits of detection for MCE with electrochemical detection are presented here. One is the implementation of a capillary expansion (bubble cell) at the detection zone to increase the exposed working electrode surface area. Bubble cell widths were varied from 1x to 10x the separation channel width (50 mum) to investigate the effects of electrode surface area on detection sensitivity, LOD, and separation efficiency. Improved detection sensitivity and decreased detection limits were obtained with increased bubble cell width, and LODs of dopamine and catechol detected in a 5x bubble cell were 25 and 50 nM, respectively. Meanwhile, fluorescent imaging results demonstrated approximately 8 and approximately 12% loss in separation efficiency in 4x and 5x bubble cell, respectively. Another effort at reducing the LOD involves using field amplified sample injection for gated injection and field amplified sample stacking for hydrodynamic injection. Stacking effects are shown for both methods using amperometric detection and pulsed amperometric detection. The LODs of dopamine in a 4x bubble cell were 8 and 20 nM using field amplified sample injection and field amplified sample stacking, respectively. However, improved LODs were not obtained for anionic analytes using either stacking technique.
机译:本文提出了两种尝试来提高电化学检测MCE的灵敏度和检测限。一种是在检测区域实施毛细管膨胀(气泡池)以增加暴露的工作电极表面积。气泡池宽度的变化范围为分离通道宽度(50毫米)的1倍至10倍,以研究电极表面积对检测灵敏度,LOD和分离效率的影响。随着气泡池宽度的增加,检测灵敏度得到提高,检测限降低,在5x气泡池中检测到的多巴胺和邻苯二酚的LOD分别为25和50 nM。同时,荧光成像结果表明在4x和5x气泡池中分离效率分别损失了约8%和约12%。降低LOD的另一项努力涉及使用场放大的样品进样进行门控进样,而场放大的样品堆叠进行流体动力进样。两种方法均显示了使用安培检测和脉冲安培检测的叠加效果。使用现场放大的样品进样和现场放大的样品堆叠,在4x气泡池中多巴胺的LOD分别为8和20 nM。但是,使用两种堆叠技术都无法获得阴离子分析物的改进LOD。

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