首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Evaluation of in-channel amperometric detection using a dual-channel microchip electrophoresis device and a two-electrode potentiostat for reverse polarity separations
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Evaluation of in-channel amperometric detection using a dual-channel microchip electrophoresis device and a two-electrode potentiostat for reverse polarity separations

机译:使用双通道微芯片电泳仪和双电极恒电位仪进行反向极性分离的通道内安培检测评估

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In-channel amperometric detection combined with dual-channel microchip electrophoresis is evaluated using a two-electrode isolated potentiostat for reverse polarity separations. The device consists of two separate channels with the working and reference electrodes placed at identical positions relative to the end of the channel, enabling noise subtraction. In previous reports of this configuration, normal polarity and a three-electrode detection system were used. In the two-electrode detection system described here, the electrode in the reference channel acts as both the counter and reference. The effect of electrode placement in the channels on noise and detector response was investigated using nitrite, tyrosine, and hydrogen peroxide as model compounds. The effects of electrode material and size and type of reference electrode on noise and the potential shift of hydrodynamic voltammograms for the model compounds were determined. In addition, the performance of two- and three-electrode configurations using Pt and Ag/AgCl reference electrodes was compared. Although the signal was attenuated with the Pt reference, the noise was also significantly reduced. It was found that lower LOD were obtained for all three compounds with the dual-channel configuration compared to single-channel, in-channel detection. The dual-channel method was then used for the detection of nitrite in a dermal microdialysis sample obtained from a sheep following nitroglycerin administration.
机译:使用两电极隔离恒电位仪对反向极性分离进行通道内安培检测与双通道微芯片电泳相结合的评估。该设备由两个独立的通道组成,工作电极和参比电极相对于通道末端位于相同的位置,从而可以消除噪声。在此配置的先前报告中,使用了正常极性和三电极检测系统。在这里描述的双电极检测系统中,参考通道中的电极既充当计数器又充当参考。使用亚硝酸盐,酪氨酸和过氧化氢作为模型化合物,研究了电极在通道中的放置对噪声和检测器响应的影响。确定了电极材料,参比电极的尺寸和类型对模型化合物的噪声和流体动力学伏安图电位位移的影响。另外,比较了使用Pt和Ag / AgCl参比电极的两电极和三电极配置的性能。尽管信号被Pt参考衰减,但噪声也显着降低。发现与单通道,通道内检测相比,具有双通道配置的所有三种化合物获得的LOD较低。然后将双通道方法用于检测硝酸甘油施用后从绵羊获得的真皮微透析样品中的亚硝酸盐含量。

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