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首页> 外文期刊>Sensor Letters: A Journal Dedicated to all Aspects of Sensors in Science, Engineering, and Medicine >Development of a Highly Sensitive and Selective Optical Chemical Sensor for the Determination of Zinc Based on Fluorescence Quenching of a Novel Schiff Base Ligand
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Development of a Highly Sensitive and Selective Optical Chemical Sensor for the Determination of Zinc Based on Fluorescence Quenching of a Novel Schiff Base Ligand

机译:基于新型席夫碱配体的荧光猝灭测定锌的高灵敏选择性光学化学传感器的开发

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摘要

A sensitive new optical sensor for Zn~(2+) is described. This optode is based on a novel Schiff base ligand, 2-(2-hydroxy-5-chloro)benzaldehyde-[4-(3-methyl-3-mesitylcyclobutyl)-1,3-thiazol-2yl]hydrazone, in plasticized polyvinyl chloride membrane. This sensing membrane is capable of determining Zn~(2+) with a high sensitivity and selectivity over a wide dynamic range between 5.0 × 10~(-7) to 1.0 × 10~(-4) mol L~(-1) at pH 6.0 with a lower detection limit of 2.2 × 10~(-7) mol L~(-1) (14.4μg L~(-1)). The sensor can readily be regenerated with 1.0 mol L~(-1) EDTA solution. In addition to high stability, the sensor shows a unique selectivity toward Zn~(2+) with respect to common metal cations. The sensor was successfully applied for the determination of zinc real samples. The results obtained for the determination of zinc ions in hair samples using the proposed method was found to be comparable with the well-established flame atomic absorption method.
机译:描述了一种用于Zn〜(2+)的灵敏的新型光学传感器。该光电二极管基于新型Schiff碱配体,在增塑聚乙烯中的2-(2-羟基-5-氯)苯甲醛-[4-(3-甲基-3-间甲苯基环丁基)-1,3-噻唑-2-基] hydr氯化膜。这种传感膜能够在5.0×10〜(-7)mol L〜(-1)的宽动态范围内以高灵敏度和高选择性测定Zn〜(2+)。 pH 6.0,检测下限为2.2×10〜(-7)mol L〜(-1)(14.4μgL〜(-1))。传感器可以很容易地用1.0 mol L〜(-1)EDTA溶液再生。除了高稳定性外,该传感器还显示出对常见金属阳离子对Zn〜(2+)的独特选择性。该传感器已成功地用于测定真实的锌样品。发现使用所提出的方法测定头发样品中锌离子的结果与公认的火焰原子吸收法相当。

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