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Sensitive recognition of ethion in food samples using turn-on fluorescence N and S co-doped graphene quantum dots

机译:使用开启荧光N和S共掺杂石墨烯量子点的食品样品中种族敏感识别

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摘要

To achieve a fast, sensitive and inexpensive method for the detection of ethion in the presence of Hg2+ ions, a nitrogen and sulfur co-doped graphene quantum dot (N,S/GQD)-based fluorescence sensing system was developed. The fluorescence of N,S/GQDs is sensitively quenched as a result of electrostatic interactions with Hg2+ ions adsorbed onto the negatively charged N,S/GQD surface. Following the introduction of ethion, the fluorescence of the Hg2+-quenched N,S/GQDs is recovered due to the strong coordination between Hg2+ and ethion. Based on the intensities of the recovered fluorescence of the N,S/GQDs, the ethion concentration was easily quantified. The linear response range of this method for ethion was from 19.2 g L-1 M to 961.2 g L-1. In this sensing system, not only was the detection limit as low as 8 g L-1, which was as good as or better than those of similar assays, but the sensing system also displayed good selectivity in detecting ethion in the presence of different physiological molecules and inorganic ions. The proposed sensing method was successfully applied to the detection of ethion in water and food samples and was found to produce encouraging results.
机译:为了在HG2 +离子存在下,在存在HG2 +离子存在下检测梯子的快速,灵敏和廉价的方法,开发了氮和硫和硫的共掺杂石墨烯量子点(N,S / GQD)的荧光传感系统。由于与吸附在带负电的N,S / GQD表面上的HG2 +离子的静电相互作用,N,S / GQDS的荧光敏感地淬火。在引入ethion之后,由于Hg2 +和ethion之间的强协调,Hg2 + -mcuncheded N,S / GQD的荧光被回收。基于N,S / GQDS的回收荧光的强度,易于量化梯子浓度。这种种植方法的线性响应范围为19.2g l-1 m至961.2g l-1。在该感测系统中,不仅是8g L-1的检出限,这与类似的测定一样好或更好,但感测系统在不同生理存在下检测种族的良好选择性分子和无机离子。所提出的传感方法已成功应用于水和食物样品中的种族的检测,并发现产生令人鼓舞的结果。

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  • 来源
    《Analytical methods》 |2018年第15期|共7页
  • 作者单位

    Iran Univ Sci &

    Technol Dept Chem Res Lab Spectrometry &

    Micro &

    Nano Extract Tehran Iran;

    Univ Tehran Dept Life Sci Engn Fac New Sci &

    Technol Tehran Iran;

    Iran Univ Sci &

    Technol Dept Chem Res Lab Spectrometry &

    Micro &

    Nano Extract Tehran Iran;

    Univ Tehran Fac Chem Ctr Excellence Electrochem Tehran Iran;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
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