首页> 外文期刊>Microchemical Journal: Devoted to the Application of Microtechniques in all Branches of Science >A new oxadiazole-based dual-mode chemosensor: Colorimetric detection of Co2+ and fluorometric detection of Cu2+ with high selectivity sensitivity
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A new oxadiazole-based dual-mode chemosensor: Colorimetric detection of Co2+ and fluorometric detection of Cu2+ with high selectivity sensitivity

机译:基于新的氧代唑基双模化学传感器:CO2 +的比色检测和Cu2 +的荧光检测,具有高选择性敏感性

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摘要

An asymmetrical oxadiazole derivative (Sensor 1) containing one pyridine and one formyl connecting to two benzene rings on both sides of oxadiazole unit was designed and synthesized. Sensor 1 displayed selective colorimetric sensing for Co2+ and Cu2+ ions via color changes to blue and yellow from colorless in CH3CN solutions, respectively. Sensor 1 not only exhibited an instantaneous naked-eye color change and but also could be used as a convenient test kit for recognition and detection of Co2+ ions. Sensor 1 presented high colorimetric sensitivity for Co2+ with low detection limit (3.92 x 10(-6) mol/L). Sensor 1 also displayed "On-Off" fluorescent sensing for Cu2+ over a wide range of competitive metal ions and could accurately detect the existence of Cu2+ in water samples via the fluorescent quenching and color change. The fluorescence intensity of sensor 1 in CH3CN solution showed a linear response to Cu2+ in the wide concentration range of 0-40 mu M which is beneficial for quantitative analysis. The studies on absorbance and fluorescence titration, H-1 NMR spectrum and ESIMS spectra confirmed that colorimetric sensing for Co2+ and fluorescent sensing for Cu2+ are ascribed to the complex formation with the stoichiometry of 1:1 for Co2+ and 1:2 for Cu2+.
机译:设计并合成了含有一个吡啶的不对称的氧代唑衍生物(传感器1)和连接到两侧的两个苯环的一个甲酰基。传感器1通过在CH3CN溶液中的无色中,通过颜色变化显示为CO2 +和Cu2 +离子的选择性色度感测。传感器1不仅表现出瞬时裸眼颜色变化,而且还可以用作识别和检测CO2 +离子的方便测试试剂盒。传感器1为CO2 +呈现出高的比色灵敏度,具有低检测限(3.92×10( - 6)mol / L)。传感器1还在各种竞争性金属离子上显示“开关”荧光感测,可以通过荧光淬火和颜色变化准确地检测水样中Cu2 +的存在。 CH3CN溶液中的传感器1的荧光强度显示出在0-40μm的宽浓度范围内的Cu2 +的线性响应,这对于定量分析是有益的。对吸光度和荧光滴定,H-1 NMR光谱和ESIMS光谱的研究证实,Co2 +的CO 2 +和荧光感测的比色感测与CO 2 +和1:2的化学计量为1:1的复合物形成。

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