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基于 Zn(II)-腙金属配合物化学传感器的水相介质中氰化物的选择性和灵敏荧光开启识别。

Selective and sensitive turn on fluorescence cyanide recognition in aqueous medium based on Zn(II)-hydrazone metal complex chemosensor.

机构信息

Department of Chemistry, Faculty of Arts and Sciences, American University of Beirut, Beirut, Lebanon.

Department of Natural Sciences, School of Arts and Sciences, Lebanese American University, Beirut, Lebanon.

出版信息

Luminescence. 2021 Nov;36(7):1608-1620. doi: 10.1002/bio.4102. Epub 2021 Jun 26.

DOI:10.1002/bio.4102
PMID:34089573
Abstract

Detection and quantification of the cyanide ion (CN ) has attracted considerable attention because of its extreme toxicity. A novel Zn(II)-complex, applicable as a fluorescent chemosensor for CN recognition, was synthesized in excellent yields from the reaction of zinc sulfate with the novel hydrazone: 3-(amino-9H-purin-yl)-N'-(hydroxybenzylidene) propanehydrazide. The structures of the hydrazone (L) and the zinc-hydrazone complex (L.Zn) were characterized by ultraviolet-visible spectrophotometry, Fourier-transform infrared spectrometry, mass spectrometry, proton- and carbon-13-nuclear magnetic resonance. The sensing performance of the proposed chemosensors, L and L.Zn, towards common ions was investigated via naked-eye studies as well as absorption and emission spectral analysis. Hydrazone (L) efficiently functioned as a fluorescence sensor for aluminum ions (Al ) and zinc ions (Zn ) with large binding constants, and exhibited colorimetric and fluorometric responses for several basic anions: OH , CO , HCO , HSO , CH COO and CN . However, L.Zn showed quick, sensitive and specific enhancement of fluorescence intensity towards CN anion, and a linear relationship was observed as the concentration of CN varied from 1 to 14 μM. The detection limit was determined to be 0.14 μM, which is lower than the 1.9 μM maximum value recommended by the World Health Organization for drinking water. The practical performance of the sensor was successfully demonstrated using various environmental water samples spiked with cyanide ion.

摘要

氰根离子 (CN ) 的检测和定量因其极端毒性而引起了相当大的关注。一种新型的锌(II)配合物,可作为用于 CN 识别的荧光化学传感器,是通过锌硫酸盐与新型腙:3-(氨基-9H-嘌呤基)-N'-(羟基苯亚甲基)丙二酰肼的反应以优异的产率合成的。腙 (L) 和锌-腙配合物 (L.Zn) 的结构通过紫外可见分光光度法、傅里叶变换红外光谱法、质谱法、质子和碳-13-核磁共振进行了表征。通过肉眼研究以及吸收和发射光谱分析,研究了所提出的化学传感器 L 和 L.Zn 对常见离子的传感性能。腙 (L) 作为荧光传感器,对铝离子 (Al ) 和锌离子 (Zn ) 具有大的结合常数,对几种碱性阴离子:OH 、CO 、HCO 、HSO 、CH COO 和 CN 表现出比色和荧光响应。然而,L.Zn 对 CN 阴离子表现出快速、灵敏和特异性的荧光强度增强,并且当 CN 浓度从 1 到 14 μM 变化时观察到线性关系。检测限确定为 0.14 μM,低于世界卫生组织推荐的饮用水中氰化物的最大 1.9 μM 值。成功地使用加标有氰化物离子的各种环境水样证明了传感器的实际性能。

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