首页> 外文期刊>Inorganica Chimica Acta >N, N coordinating schiff base ligand acting as a fluorescence sensor for zinc(II) and colorimetric sensor for copper(II), and zinc(II) in mixed aqueous media
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N, N coordinating schiff base ligand acting as a fluorescence sensor for zinc(II) and colorimetric sensor for copper(II), and zinc(II) in mixed aqueous media

机译:N,N配位席夫碱配体在混合水介质中充当锌(II)的荧光传感器和铜(II)和锌(II)的比色传感器

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摘要

Two simple and low cost new schiff base compounds of fluorene and derivative of imidazole based chemo sensor were synthesized and characterized by H-1 NMR, IR and mass spectroscopic technique. These sensors could simultaneously detect two biologically important metal ions through fluorogenic (Zn2+) and chromogenic (Cu2+ and Zn2+) methods in mixed aqueous solution. However, the sensor functioned as a "turn-on'' fluorescence receptor only to Zn2+ ion in presence of other metal ions. The detection limit of HL for Zn2+ (10 mu M) was below the guidelines of the WHO (76 mu M). The 2:1 binding stoichiometry of the ligand metal ratio in complexes were established by combined UV-Vis, fluorescence and ESI-MS spectroscopy. In addition, the electronic structure and photo physical properties of the ligands and complexes were calculated by DFT and time-dependent DFT (TDDFT) method. The sensor also showed color changes from colorless to yellow upon selective binding with Zn2+ and Cu2+ metal ions, which were visible to the naked eye. The detection limit of the sensor for Cu2+ (10 mu M) was found to be below the maximum permissible copper concentration in drinking water as per the guidelines of the World Health Organization (30 mu M) and therefore it is capable of being a practical system for the monitoring of Cu2+ concentrations in aqueous samples. (C) 2014 Published by Elsevier B.V.
机译:合成了两种简单,低成本的芴新席夫碱化合物和咪唑基化学传感器的衍生物,并通过H-1 NMR,IR和质谱技术对其进行了表征。这些传感器可以通过混合水溶液中的荧光(Zn2 +)和发色(Cu2 +和Zn2 +)方法同时检测两种生物学上重要的金属离子。但是,该传感器仅在存在其他金属离子的情况下才用作Zn2 +离子的“开启”荧光受体,对Zn2 +的HL的检出限(10μM)低于WHO的指导标准(76μM)通过紫外-可见,荧光和ESI-MS光谱技术建立了配合物中配体金属比为2:1的结合化学计量关系,并通过DFT和时间计算了配体与配合物的电子结构和光物理性质。依赖的DFT(TDDFT)方法,当与Zn2 +和Cu2 +金属离子选择性结合时,该传感器还显示出从无色到黄色的颜色变化,肉眼可见,该传感器对Cu2 +的检测极限为10μM。被发现低于世界卫生组织的指导标准所规定的饮用水中允许的最大铜浓度(30μM),因此它能够作为一种监测含水样品中Cu2 +浓度的实用系统。(C)2014酒馆由Elsevier B.V.

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