Study of A Tridentate Schiff-Base as A Highly Selective Fluorescent Sensor for Detection of Copper and Chromium Ions

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Abstract

A simple and easily synthesized fluorescent sensor, Schiff base sensor (SBS), produced by condensation reaction of equal amounts of anthranilic acid and salicyladehyde. It was synthesized and characterized systemically. Both UV-vis and fluorescence spectroscopic studies indicated that the SBS sensor showed good selectivity toward the studied ions: Na+, K+, Cu2+, Co2+, Fe3+ , Al3+ and Cr3+. Whereas, chromium (III) and copper (II) exhibited the largest fluorescence enhancement over the other investigated ions. Chelation-enhanced fluorescence were shown upon the interaction of SBS sensor with some metal ions studied forming inclusion complexes. The fluorescent sensor in aqueous ethanolic solution exhibited high selectivity towards Cu2+ and Cr3+ ions, forming 2 : 1 (L : M) complex as determined by Job’s plot. The formation constants of the inclusion complexes (Mn+/SBS) were measured via spectrofluorometric method applying Benesi-Hildebrand equation.
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三齿希夫碱作为高选择性荧光传感器检测铜和铬离子的研究
用等量的邻氨基苯甲酸和水杨醛缩合反应制备了一种简单、易于合成的荧光传感器——希夫碱传感器(SBS)。对其进行了系统的合成和表征。紫外可见光谱和荧光光谱研究表明,SBS传感器对Na+、K+、Cu2+、Co2+、Fe3+、Al3+和Cr3+离子具有良好的选择性。然而,铬(III)和铜(II)表现出最大的荧光增强。SBS传感器与所研究的一些金属离子相互作用形成包合物,显示出螯合增强的荧光。该荧光传感器在乙醇水溶液中对Cu2+和Cr3+离子表现出高选择性,形成2:1 (L: M)配合物。采用Benesi-Hildebrand方程,用荧光光谱法测定了Mn+/SBS包合物的形成常数。
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