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2+ recognition and its complex for sensing S 2? by a Cu 2+ displacement approach in aqueous media]]>

机译:<![CDATA [CU 2 + 识别及其对传感S 2的复合物> 2 ?通过cu 2 + 水介质的位移方法]]>

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摘要

In this work, a simple and easily synthesized Schiff-based derivative colorimetric and fluorescent sensor (1), 4-dimethylamino-benzoic acid (2-imidazole formaldehyde)-hydrazide, was obtained for the detection of Cu2+and S2?. The compound1exhibited dual spectral responses to Cu2+, that is, vivid color change and fluorescence enhancement in the presence of Cu2+. The detection limits were valued as 0.46?μM and 15?nM according to absorption and fluorescent response, respectively. Both of them are below the World Health Organization (WHO) guidelines for drinking water (31.5?μM). In addition, the ensemble (1-Cu2+) selectively and sensitively detected a low concentration of S2?. As the addition of S2?instantly removed Cu2+from the ensemble (1-Cu2+) resulting in a color change from yellow to colorless and a “turn-off” fluorescent response. The detection limit for S2?was estimated as 0.12?μM (from fluorescent method) and 0.68?μM (from absorption method), respectively, each of which was also lower than the maximum allowable level of S2?(15?μM) in drinking water defined by the WHO. The binding process was confirmed via UV–vis absorption, fluorescence measurements,1H NMR, mass spectroscopy and density functional theory calculation. What's more, successful practical application of test paper is used to inspect the S2?which means the convenient and rapid assay in real samples can be achieved.
机译:在这项工作中,获得了一种简单易于合成的基于席克基衍生物比色和荧光传感器(1),得到4-二甲基氨基 - 苯甲酸(2-咪唑甲醛) - 酰肼,用于检测Cu 2 +和S2?在Cu2 +存在下,Cu2 +的化合物的双光谱反应,即鲜艳的颜色变化和荧光增强。根据吸收和荧光响应,检测限值分别值为0.46Ωμm和15μm。他们俩都低于世界卫生组织(世卫组织)饮用水指南(31.5?μm)。另外,集合(1-CU2 +)选择性和敏感地检测到低浓度的S2?作为S2的添加?从集合(1-CU2 +)瞬间除去Cu2 +,导致颜色从黄色变为无色,“关闭”荧光响应。 S2的检测限估计为0.12Ωμm(从荧光法)和0.68Ωμm(从吸收法),每一个也低于饮用的最大允许水平的S2?(15≤μm)由世卫组织定义的水。通过UV-Vis吸收,荧光测量,1H NMR,质谱和密度泛函的理论计算证实了结合过程。更重要的是,使用试验纸的成功实际应用来检查S2吗?这意味着可以实现实际样品中的方便快速的测定。

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