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首页> 外文期刊>The Journal of Organic Chemistry >Simultaneous Detection of Cu2+ and Hg2+ via Two Mutually Independent Sensing Pathways of Biimidazole Push-Pull Dye
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Simultaneous Detection of Cu2+ and Hg2+ via Two Mutually Independent Sensing Pathways of Biimidazole Push-Pull Dye

机译:通过两种相互独立的Biimidazole推挽染料的两种相互独立的感测途径同时检测Cu2 +和Hg2 +

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摘要

An easy-to-synthesize, biimidazole push-pull dye has been designed, comprising two mutually independent analyte binding sites. It has been found that Hg2+ coordinates with the compound via thiophene residue and inhibits the charge-transfer (CT) process, which transforms the yellow-colored solution colorless. On the other hand, an unusually large bathochromic shift is observed in CT band upon addition of Cu2+, accompanied by a change in the color from yellow to red. A rather surprising observation is made from mechanistic studies, where it indicates that Cu2+ catalyzes the formation of 6-imino-5,6-dihydropyrrolo[3,4-d]imidazole-4(3H)-one (IPIMO) derivative. This strongly affects the charge-transfer state of the compound as well as its polarizability. Most importantly, this is the first report where IPIMO formation reaction has been exploited for sensing of a metal ion. Further, the system was employed for screening of both of these metal ions in wastewater samples. Recovery values ranging from 93.3 to 105.0% confirm the suitability of the present method for estimating trace level of metal ions in complex matrices. In addition, inexpensive on-site detection systems were developed using paper strips.
机译:设计易于合成的双咪唑推拉染料,包括两个相互独立的分析物结合位点。已经发现HG2 +通过噻吩残余物与化合物坐标并抑制电荷转移(CT)过程,其转化黄色溶液无色。另一方面,在加入Cu2 +时在CT带中观察到异常大的碱基转变,伴随着从黄色到红色的颜色的变化。一个相当令人惊讶的观察是从机理研究制成,它表明Cu2 +的催化6-亚氨基-5,6-二氢吡咯并[3,4-d]咪唑-4-(3H) - 酮(IPIMO)衍生物的形成。这强烈影响化合物的电荷转移状态以及其极化性。最重要的是,这是第一个报告,其中IPIMO形成反应已被利用用于感测金属离子。此外,该系统用于筛选废水样品中的这两种金属离子。从93.3到105.0%的回收值证实了本发明方法估算复杂基质中金属离子的痕量水平的适用性。此外,使用纸条开发出廉价的现场检测系统。

著录项

  • 来源
    《The Journal of Organic Chemistry》 |2019年第4期|共10页
  • 作者单位

    Indian Inst Sci Dept Organ Chem Bangalore 560012 Karnataka India;

    Univ Pardubice Fac Chem Technol Inst Organ Chem &

    Technol CZ-53210 Pardubice Czech Republic;

    Univ Pardubice Fac Chem Technol Inst Organ Chem &

    Technol CZ-53210 Pardubice Czech Republic;

    Indian Inst Sci Dept Organ Chem Bangalore 560012 Karnataka India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 有机化学;
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