首页> 外文期刊>Microchemical Journal: Devoted to the Application of Microtechniques in all Branches of Science >Oxadiazole-based 'on-off' fluorescence chemosensor for rapid recognition and detection of Fe2+ and Fe3+ in aqueous solution and in living cells
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Oxadiazole-based 'on-off' fluorescence chemosensor for rapid recognition and detection of Fe2+ and Fe3+ in aqueous solution and in living cells

机译:基于氧基唑的'开关'荧光化学传感器,用于快速识别和检测水溶液和活细胞的Fe2 +和Fe3 +

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摘要

An oxadiazole-based chemosensor (sensor 1) for Fe3+/Fe2+ was successfully designed and synthesized. Sensor 1 displayed fluorescence quenching response towards both Fe3+ and Fe2+ in THF:H2O (4:1, v/v) solvent with high selectivity and sensitivity over all other competitive metal ions. Job's plot, mass spectra, DFT calculation and fluorescence titration disclosed that fluorescence quenching was caused by forming 1:1 complex between sensor 1 and iron ions. Sensor 1 presented high sensitive fluorescence response at the pH value of human body and its fluorescence intensity showed linear relationship with the concentration of iron ion. Sensor 1 also presented fast fluorescence response towards iron ions and the lower detection limit, 7.78 mu M for Fe2+ ion and 6.95 mu M for Fe3+ ion, respectively. Sensor 1 can be used as test strips to detect iron ions in water samples. Fluorescence cell imaging also demonstrated sensor 1 can recognize iron ions in living cells.
机译:用于Fe3 + / Fe2 +的基于氧基唑的化学传感器(传感器1)被成功设计和合成。 传感器1在THF中的Fe3 +和Fe2 +朝向Fe3 +和Fe2 +显示出荧光猝灭反应:H 2 O(4:1,v / v)溶剂,对所有其他竞争性金属离子的选择性和敏感性高。 作业的曲线,质谱,DFT计算和荧光滴定公开,即通过在传感器1和铁离子之间形成1:1络合物而引起荧光猝灭。 传感器1在人体的pH值下呈现高敏感的荧光反应,其荧光强度与铁离子浓度显示线性关系。 传感器1还呈现出铁离子的快速荧光反应和较低的检测极限,对于Fe2 +离子和6.95μm的Fe3 +离子分别为7.78μm。 传感器1可用作试剂以检测水样中的铁离子。 荧光细胞成像还证明了传感器1可以识别活细胞中的铁离子。

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