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A guanidine based bis Schiff base chemosensor for colorimetric detection of Hg(II) and fluorescent detection of Zn(II) ions

机译:基于胍的BIS Schiff基础化学传感器,用于测色检测HG(II)和Zn(II)离子的荧光检测

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摘要

A novel guanidine base colorimetric and fluorescent bis Schiff base chemosensor L has been designed synthesized and characterized by elemental analyses,H-1 NMR, FT-IR and ESI-MS spectral analysis. The chemosensor L could detect Hg2+ by "naked eye" colour change from yellow to red and Zn2+ through selective fluorescence enhancement in CH3OH-tris buffer (1/1, v/v) over other metal ions commonly obtained in physiological and environmental samples. The Job's plot analysis revealed that 1:2 and 1:1 coordination patterns for L-Hg2+ and LZn2+ complexes respectively, which have further been confirmed by ESI-MS spectra. The DFT calculations are also in agreement with the experimental results. The limit of detection for Hg2+ and Zn2+ are found to be 9.89 x 10(-7) M and 1.23 x 10(-6) M respectively, which are far below than the guidelines provided by World Health Organization (WHO) for drinking water. Moreover the chemosensor L has applications in real sample analysis in environmental and biological samples and building molecular logical devices. To the best of our knowledge, this observation is the first case where a guanidine base bis Schiff base is being utilized for sensing of metal ions.
机译:一种新型胍基碱比色和荧光BIS Schiff基础化学传感器L已经设计合成,其特征在于元素分析,H-1 NMR,FT-IR和ESI-MS光谱分析。通过在生理和环境样品中通常获得的其他金属离子上,通过在生理和环境样品中的其他金属离子上通过选择性荧光增强来检测从黄色至红色和Zn2 +的“肉眼”颜色改变的Hg2 +。作业的绘图分析显示,分别通过ESI-MS光谱进一步证实了L-HG2 +和LZN2 +复合物的1:2和1:1的协调模式。 DFT计算也与实验结果一致。发现HG2 +和Zn2 +的检测极限分别为9.89×10(-7)m和1.23×10(-6)m,远低于世界卫生组织(世卫组织)用于饮用水的指南。此外,Chemosensor L在环境和生物样品中具有实际样品分析中的应用,并建造分子逻辑装置。据我们所知,这种观察是第一种用于感测金属离子的胍基碱基BIS Schiff基底的情况。

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