Ding Yongsheng, Garcia Carlos D
Department of Chemistry, The University of Texas at San Antonio, TX 78249, USA.
Analyst. 2006 Feb;131(2):208-14. doi: 10.1039/b509405d. Epub 2005 Sep 30.
A miniaturized analytical system for separation and detection of three EPA priority phenolic pollutants, based on a poly(dimethylsiloxane)-fabricated capillary electrophoresis microchip and pulsed amperometric detection is described. The approach offers a rapid (less than 2 min), simultaneous measurement of three phenolic pollutants: phenol, 4,6-dinitro-o-cresol and pentachlorophenol. The highly stable response (RSD = 6.1%) observed for repetitive injections (n > 100) reflects the effectiveness of Au working electrode cleaned by pulsed amperometric detection. The effect of solution conditions, separation potential and detection waveform were optimized for both the separation and detection of phenols. Under the optimum conditions (5.0 mM phosphate buffer pH = 12.4, detection potential: 0.7 V, separation potential: 1200 V, injection time: 10 s) the baseline separation of the three selected compounds was achieved. Limits of detection of 2.2 microM (2.8 fmol), 0.9 microM (1.1 fmol), and 1.3 microM (1.6 fmol) were achieved for phenol, 4,6-dinitro-o-cresol and pentachlorophenol, respectively. A local city water sample and two over-the-counter sore-throat medicines were analyzed in order to demonstrate the capabilities of the proposed technique to face real applications.
本文描述了一种基于聚二甲基硅氧烷制造的毛细管电泳微芯片和脉冲安培检测的小型化分析系统,用于分离和检测三种美国环境保护局(EPA)优先控制的酚类污染物。该方法能够快速(不到2分钟)同时测量三种酚类污染物:苯酚、4,6-二硝基邻甲酚和五氯酚。重复进样(n>100)时观察到的高度稳定响应(相对标准偏差RSD=6.1%)反映了通过脉冲安培检测清洁金工作电极的有效性。针对酚类的分离和检测,优化了溶液条件、分离电位和检测波形。在最佳条件下(5.0 mM磷酸盐缓冲液,pH=12.4,检测电位:0.7 V,分离电位:1200 V,进样时间:10 s),实现了三种选定化合物的基线分离。苯酚、4,6-二硝基邻甲酚和五氯酚的检测限分别为2.2 microM(2.8 fmol)、0.9 microM(1.1 fmol)和1.3 microM(1.6 fmol)。为了证明所提出技术在实际应用中的能力,对当地城市水样和两种非处方咽喉痛药物进行了分析。