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Synthesis of a novel hexaazatriphenylene derivative for the selective detection of copper ions in aqueous solution

机译:用于在水溶液中铜离子的选择性检测的新型六氮酰丙烯衍生物的合成

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摘要

A hexaazatriphenylene (HAT) derivative, naphtho[2,3-h]naphtho[2 ',3':7,8]quinoxalino[2,3-a]naphtho[2 ',3 ':7,8]quinoxalino[2,3-c]phenazine-5,10,15,20,25,30-hexaone (NQH) was synthesized, characterized, and found to have novel properties in being selective toward the detection of copper (Cu2+) ions. The capability of NQH to be employed as a colorimetric, chemo-fluorescence and electrochemical sensor for the detection of Cu2+ was demonstrated by performing UV-Vis absorbance, fluorescence intensity, and cyclic voltammetry (CV) measurements. The interaction between NQH and Cu2+ was initially observed with an obvious color change from yellow to brown upon the addition of Cu2+ ions to NQH. The interaction was also confirmed by UV-Vis absorbance, fluorescence intensity, and mass spectroscopy (MS/MS) measurements. UV absorbance, fluorescence and CV of NQH toward Cu2+ showed good linearity with a detection limit of 3.32 mu M, 2.20 mu M and 0.78 mu M, respectively, which are lower than the toxicity levels of copper in drinking water (20-30 mu M) set by the U.S. Environmental Protection Agency (EPA) and World Health Organization (WHO). A 1 : 2 stoichiometry complexation between NQH and Cu2+ was confirmed by Job's plot and MS/MS. In addition, the selectivity and sensitivity of the NQH compound towards Cu2+ ions were further confirmed by performing CV on a screen printed flexible and planar electrochemical sensor.
机译:六唑氮烯(帽子)衍生物,萘硫醚[2,3-H]萘[2',3':7,8]喹喔啉基[2',3':7,8]喹喔啉[2合成,特征,合成3-C]吩嗪-5,10,15,20,2,25,30-六酮(NQH),并发现具有新的性质,用于检测铜(Cu2 +)离子的检测。通过进行UV-VIS吸光度,荧光强度和循环伏安法(CV)测量,通过进行用于检测Cu2 +的比色,化学荧光和电化学传感器的能力。最初观察到NQH和Cu2 +之间的相互作用,并在向NQH加入Cu 2 +离子时从黄色至棕色变化明显。还通过UV-Vis吸光度,荧光强度和质谱(MS / MS)测量来证实相互作用。 NQH的UV吸光度,荧光和CV朝向Cu2 +显示出良好的线性度,检测限为3.32μm,2.20μm和0.78μm,低于饮用水中铜的毒性水平(20-30μm )由美国环境保护局(EPA)和世界卫生组织(世卫组织)设定。通过作业的图和MS / MS确认NQH和Cu2 +之间的1:2化学计量络合。另外,通过在印刷的柔性和平面电化学传感器上进行CV进一步证实NQH化合物朝向Cu2 +离子的选择性和敏感性。

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    《RSC Advances》 |2019年第68期|共10页
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  • 正文语种 eng
  • 中图分类 化学;
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