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A novel optical chemical sensor for the determination of nickel(H) based on fluorescence quenching of newly synthesized thiazolo-triazol derivative and application to real samples

机译:一种新合成的噻唑三唑衍生物的荧光猝灭法测定镍(H)的新型光学化学传感器及其在实际样品中的应用

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摘要

The characterization of a new optical sensor membrane is described for the determination of Ni(II) based on the immobilization of the fluorescent thiazolo-triazol derivative in PVC matrix. This optode has a wide linear range of 1.0 × 10~(-9)-4.4 × 10~(-3) M at pH 6.0 for Ni(II) ions with the detection limit of 8.5 × 10~(-10) M. The response of the optode membrane to Ni(II) is fully reversible and reveals a very good selectivity towards Ni(II) ion over a wide variety of other metal ions in solution. The membrane showed a good durability and short response time with no evidence of reagent leaching. The proposed optical sensor gives good results for applications in direct determination of Ni(Ⅱ) in real samples that are satisfactorily comparable with corresponding data from flame atomic absorption spectrometry.
机译:描述了一种新的光学传感器膜的特性,该特性用于将荧光噻唑-三唑衍生物固定在PVC基质中,用于测定Ni(II)。对于Ni(II)离子,此光电极在pH 6.0时具有1.0×10〜(-9)-4.4×10〜(-3)M的宽线性范围,检测极限为8.5×10〜(-10)M.光电二极管膜对Ni(II)的响应是完全可逆的,并且显示出对Ni(II)离子对溶液中多种其他金属离子具有很好的选择性。该膜表现出良好的耐久性和较短的响应时间,没有任何试剂浸出的迹象。所提出的光学传感器为直接测定真实样品中的镍(Ⅱ)提供了良好的结果,可以与火焰原子吸收光谱法的相应数据相媲美。

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