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Fast detection of triazine herbicides on a microfluidic chip using capillary electrophoresis pulse amperometric detection

机译:使用毛细管电泳脉冲安培检测法快速检测微流控芯片上的三嗪类除草剂

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摘要

We report simple and rapid capillary electrophoresis (CE) separation followed by in-channel pulsed amperometric detection (PAD) of three common triazine herbicides: simazine, atrazine and ametryn that are used to control broad leaf weeds and annual grasses. For their detection in soil and groundwater samples, a CE-PAD microfluidic chip was fabricated using standard photolithography methods. Cyclic vol-tammetry was conducted on these herbicides that exhibited a characteristic cathodic peak at -0.70 V for simazine or atrazine and -0.80 V for ametryn, without any anodic peak at reverse scan, indicating that the cathodic peaks were irreversible electron transfer processes. For effective CE-PAD separation of triazine complex, the capillary was filled with 1.5% agarose. The pulsed amperometric detection of these chemicals ensured better sensor response and low electrode fouling. The average electropherogram of simazine, atrazine and ametryn showed single peaks at 58, 66 and 74 s, respectively at 20 V/cm separation potential. A mixture of all three herbicides showed similar separated peaks. HPLC was also conducted in a soil spiked with these pollutants to compare the method. The results hold the promise of detecting triazines within a very short time.
机译:我们报告了简单快速的毛细管电泳(CE)分离,然后对三种常见的三嗪除草剂:辛嗪,阿特拉津和ametricn进行了通道内脉冲安培检测(PAD),这些除草剂用于控制阔叶杂草和一年生草。为了在土壤和地下水样品中进行检测,使用标准的光刻方法制造了CE-PAD微流控芯片。对这些除草剂进行了循环伏安法测定,这些除草剂在simazine或atrazine的-0.70 V和atricn的-0.80 V处显示特征性的阴极峰,在反向扫描时没有任何阳极峰,表明该阴极峰是不可逆的电子转移过程。为了有效地进行三嗪配合物的CE-PAD分离,毛细管中已充满1.5%的琼脂糖。对这些化学物质的脉冲安培检测确保了更好的传感器响应和较低的电极结垢。 simazine,atrazine和atricn的平均电泳图分别在20 V / cm的分离电位下于58、66和74 s处显示出一个单峰。所有三种除草剂的混合物均显示相似的分离峰。在掺有这些污染物的土壤中也进行了HPLC进行比较。该结果有望在很短的时间内检测到三嗪。

著录项

  • 来源
    《Microelectronic Engineering》 |2012年第9期|p.391-395|共5页
  • 作者单位

    Department of Nano Science and Engineering, Myongji University, Cyeonggi 449-728, Republic of Korea;

    Department of Nano Science and Engineering, Myongji University, Cyeonggi 449-728, Republic of Korea;

    Department of Nano Science and Engineering, Myongji University, Cyeonggi 449-728, Republic of Korea;

    Department of Nano Science and Engineering, Myongji University, Cyeonggi 449-728, Republic of Korea;

    Department of Nano Science and Engineering, Myongji University, Cyeonggi 449-728, Republic of Korea,Department of Electrical Engineering, Myongji University, Gyeonggi 449-728, Republic of Korea;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    pulsed amperometric detection; capillary electrophoresis; CE-PAD microchip; triazine herbicide; lab-on-a-chip;

    机译:脉冲安培检测;毛细管电泳CE-PAD微芯片;三嗪除草剂芯片实验室;

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