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Dual anion colorimetric and fluorometric sensing of arsenite and cyanide ions

机译:双阴痛比色和烟灰传感亚砷酸盐和氰化物离子

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摘要

A naphthalene appended probe, 2-((2-hydroxynaphthalen-1-yl)methylene)hydrazine carbothioamide, was synthesized and found to recognize AsO2- and CN- ions with turn-on emission fluorescence over different anions in a DMF : H2O (HEPES buffer, pH = 7.2) (9 : 1, v/v solution) medium. The probe was characterized using different techniques including NMR, IR, CHNS, UV-visible and ESI mass spectroscopy. This probe shows colorimetric change and an enhancement in the fluorescence emission with arsenite and cyanide ions among the other anions. The 1 : 1 and 1 : 2 stoichiometries of the probe with arsenite and cyanide ions, respectively, were calculated from the Job's plots based on the UV-visible spectra. The binding constant was established using the B-H (Benesi-Hildebrand) plots for both anions arsenite and cyanide as 3.1 x 10(5) and 1.9 x 10(6), respectively. The limit of detection (LOD) of arsenite and cyanide ions was 66 nM and 77 nM, respectively, using the emission spectra. The binding affinity of probe L with both anions was determined using NMR, DFT optimization, ESI-mass spectroscopy, electrochemical behavior and optical studies. The probe is the first chemical sensor that detects both major toxic anions with significantly high detection limits.
机译:合成萘己烷探针,2 - ((2-羟基萘-1-基)亚甲基)肼碳甲酰胺,发现在DMF中的不同阴离子(HEPES)上的不同阴离子(HEPES)识别aso2-和cnions。缓冲液,pH = 7.2)(9:1,V / V溶液)培养基。探针用不同的技术表征,包括NMR,IR,CHN,UV可见和ESI质谱。该探针显示比色变化和其他阴离子中砷酸盐和氰化离子的荧光发射的增强。基于UV可见光光谱,分别与砷酸盐和氰化物离子的探针的1:1和1:2分别与砷酸盐和氰化物离子的化学测定物计算。使用浑浊砷酸盐和氰化物的B-H(Benesi-Hildebrand)图分别建立结合常数,分别为3.1×10(5)和1.9×10(6)。使用发射光谱,亚砷酸盐和氰化物离子的检测极限(氰化物离子)分别为66nm和77nm。使用NMR,DFT优化,ESI质谱,电化学行为和光学研究,测定探针L与两个阴离子的结合亲和力。探针是第一种化学传感器,可检测具有显着高度检测限的主要毒性阴离子。

著录项

  • 来源
    《RSC Advances》 |2016年第102期|共9页
  • 作者

    Yadav Neetu; Singh Ashok Kumar;

  • 作者单位

    Indian Inst Technol Roorkee Dept Chem Roorkee 247667 Uttar Pradesh India;

    Indian Inst Technol Roorkee Dept Chem Roorkee 247667 Uttar Pradesh India;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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