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Colorimetric detection of copper in water using a schiff base derivative

机译:使用Schiff基衍生物在水中的比色度检测

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Organic molecular sensors have the advantage of being used through an easy, fast, economical and reliable optical method for detecting toxic metal ions in our environment. In this work, we present a simple but highly specific organic ligand compound 5-Chloro-2-((E)-((E)-3-(4-(dimethylamino)phenyl)allylidene)amino)phenol (L1) that acts as a colorimetric sensor for ions in a mixture of acetonitrile/water (ratio 10:1, v:v). Binding interaction between L1 and various metal-ions has been established by ultraviolet-visible spectroscopic measurements that indicate favorable coordination of the ligand with selective metal ions, particularly, with copper. These results showed that the electronic transition band shape of L1 change after binding with copper in aqueous solution. L1 exhibited binding-induced color changes from yellow to pink one detected by the naked eye. This new sensor presented 2.5 × 10~(-6) M as limit detection, even under the presence of other metal ions.
机译:有机分子传感器具有通过简单,快速,经济可靠的光学方法使用的优点,用于检测我们环境中有毒金属离子。在这项工作中,我们提出了一种简单但高度特异性的有机配体化合物5-氯-2-((E) - ((E)-3-(4-(二甲基氨基)苯基)烯丙基)氨基)苯酚(L1)作为乙腈/水(比率10:1,V:V)的混合物中的离子传感器。通过紫外 - 可见光谱测量确定L1和各种金属离子之间的结合相互作用,其表明配体与选择性金属离子的合适配位,特别是用铜。这些结果表明,在水溶液中与铜结合后L1的电子转换带形状。 L1表现出与肉眼检测到的黄色到粉红色的结合诱导的颜色变化。这种新传感器呈现为2.5×10〜(-6)m作为限制检测,即使在其他金属离子的存在下也是如此。

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