Chen Gang, Bao Huiming, Yang Pengyuan
Department of Chemistry, Fudan University, Shanghai, China.
Electrophoresis. 2005 Dec;26(24):4632-40. doi: 10.1002/elps.200500503.
A microchip CE-amperometric detection (AD) system has been fabricated by integrating a two-dimensionally adjustable CE microchip and an AD cell containing a one-dimensionally adjustable disk detection electrode in a Plexiglas holder. It facilitates the precise 3-D alignment between the channel outlet and the detection electrode without a complicated 3-D manipulator. The performance of this unique system was demonstrated by separating five aromatic amines (1,4-phenyldiamine, aniline, 2-methylaniline, 4-chloroaniline, and 1-naphthylamine) of environmental concern. Factors influencing their separation and detection processes were examined and optimized. The five analytes have been well separated within 140 s in a 74 cm long separation channel at a separation voltage of +2500 V using a 10 mM phosphate buffer (pH 3.5). Highly linear response is obtained for the five analytes over the range 20-200 microM with the detection limits ranging from 0.46 to 1.44 microM, respectively. The present system demonstrated long-term stability and reproducibility with RSDs of less than 5% for the peak current (n = 9). The new approach for the microchannel-electrode alignment should find a wide range of applications in CE, flowing injection analysis, and other microfluidic analysis systems.
通过将二维可调的毛细管电泳(CE)微芯片和一个包含一维可调圆盘检测电极的安培检测(AD)池集成在一个有机玻璃支架中,制备了一种微芯片CE-安培检测系统。它无需复杂的三维操纵器,就能实现通道出口与检测电极之间精确的三维对齐。通过分离五种具有环境相关性的芳香胺(1,4-苯二胺、苯胺、2-甲基苯胺、4-氯苯胺和1-萘胺),证明了这个独特系统的性能。研究并优化了影响它们分离和检测过程的因素。使用10 mM磷酸盐缓冲液(pH 3.5),在+2500 V的分离电压下,在74 cm长的分离通道中,140 s内将五种分析物完全分离。五种分析物在20-200 microM范围内获得了高度线性响应,检测限分别为0.46至1.44 microM。本系统表现出长期稳定性和重现性,峰电流的相对标准偏差(RSD)小于5%(n = 9)。微通道-电极对齐的新方法应在CE、流动注射分析和其他微流控分析系统中找到广泛的应用。