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一种比色化学传感器,用于与(E)-2-(1-(3-氨基苯基)亚乙基氨基)苯硫醇发生明显颜色变化,以检测实际水样中的铜。

A colorimetric chemosensor for distinct color change with (E)-2-(1-(3-aminophenyl)ethylideneamino)benzenethiol to detect Cu in real water samples.

作者信息

Patil Nilima, Dhake R B, Phalak Raju, Fegade Umesh, Naushad Mu, Bathula Chinna, Kanchi Suvardhan, Govender Krishna

机构信息

Department of Chemistry, D. D. N. Bhole College, Bhusawal, Jalgaon, MH, 425201, India.

Department of Chemistry, Bhusawal Arts, Science and P. O. Nahata Commerce College, Bhusawal, Jalgaon, MH, 425201, India.

出版信息

Anal Sci. 2023 Aug;39(8):1413-1423. doi: 10.1007/s44211-023-00355-z. Epub 2023 Jun 7.

Abstract

The study reports the synthesis of chemosensor (E)-2-(1-(3-aminophenyl)ethylideneamino)benzenethiol (C1), a highly sensitive, colorimetric metal probe that shows distinct selectivity for the detection of Cu ion in various real water samples. Upon complexation with Cu in CHOH/HO (60:40 v/v) (aqueous methanol), the C1 demonstrate significant enhancement in the absorption at 250 nm and 300 nm with a color change from light yellow to brown which was visualized using naked-eye. Therefore, these properties make C1 as an effective candidate for on-site Cu ions detection. The emission spectrum of C1 illustrated "TURN-ON" recognition of Cu with a limit of detection (LOD) of 46 nM. Furthermore, Density Functional Theory (DFT) calculations were performed to better understand the interactions between C1 and Cu. The obtained results suggested that the electron clouds present around the -NH in nitrogen and sulfur in -SH play a pivotal role in the formation of a stable complex. The computational results were in good agreement with the experimental UV-visible spectrometry results.

摘要

该研究报告了化学传感器(E)-2-(1-(3-氨基苯基)亚乙基氨基)苯硫醇(C1)的合成,这是一种高度灵敏的比色金属探针,对各种实际水样中的铜离子检测具有明显的选择性。在CHOH/HO(60:40 v/v)(甲醇水溶液)中与铜络合时,C1在250 nm和300 nm处的吸收显著增强,颜色从浅黄色变为棕色,肉眼即可观察到。因此,这些特性使C1成为现场检测铜离子的有效候选物。C1的发射光谱表明对铜具有“开启”识别,检测限(LOD)为46 nM。此外,进行了密度泛函理论(DFT)计算,以更好地理解C1与铜之间的相互作用。所得结果表明,氮原子上的-NH和-SH中的硫周围的电子云在形成稳定络合物中起关键作用。计算结果与实验紫外可见光谱结果吻合良好。

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