首页> 外文期刊>ACS Omega >Using Smartphone APP To Determine the CN– Concentration Quantitatively in Tap Water: Synthesis of the Naked-Eye Colorimetric Chemosensor for CN– and Ni2+ Based on Benzothiazole
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Using Smartphone APP To Determine the CN– Concentration Quantitatively in Tap Water: Synthesis of the Naked-Eye Colorimetric Chemosensor for CN– and Ni2+ Based on Benzothiazole

机译:使用智能手机APP定量测定自来水中的CN–浓度:基于苯并噻唑的CN–和Ni2 +裸眼比色化学传感器的合成

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A naked-eye colorimetric chemosensor DK based on benzothiazole could recognize CN– effectively. When DK interacted with CN– in the aqueous solution, the obvious color change of the solution was directly observed by the naked eye. Other anions did not cause any interference. It is interesting that DK could also discriminate Ni2+ from other cations, and the possible interaction mode between them was verified based on the Job’s plot, 1H nuclear magnetic resonance titration, infrared , electrospray ionization mass spectrometry, scanning electron microscopy analysis, and density functional theory calculation methods. As a result, it is clear that the mode of action between DK and CN– was different from that between DK and Ni2+. Meanwhile, the limit of detection of DK toward CN– and Ni2+ was calculated to be 1.7 × 10–8 or 7.4 × 10–9 M, respectively. In addition, CN– was recognized qualitatively by a test paper and silica gel plates made from DK. DK was able to detect CN– in tap water quantitatively, rapidly, and on-site by the use of a smartphone APP. All results implied that DK has certain prospects for practical application to identify CN– in water.
机译:基于苯并噻唑的肉眼比色化学传感器DK可以有效识别CN–。当DK与水溶液中的CN–相互作用时,用肉眼直接观察到溶液的明显颜色变化。其他阴离子没有引起任何干扰。有趣的是,DK还可以将Ni2 +与其他阳离子区分开,并根据Job's图,1H核磁共振滴定,红外,电喷雾电离质谱,扫描电子显微镜分析和密度泛函理论验证了它们之间可能的相互作用模式。计算方法。结果,很明显,DK和CN–之间的作用方式不同于DK和Ni2 +之间的作用方式。同时,DK对CN–和Ni2 +的检出限经计算分别为1.7×10–8或7.4×10–9M。此外,CN–被试纸和DK制成的硅胶板定性识别。通过使用智能手机APP,DK能够定量,快速和现场检测自来水中的CN–。所有结果都表明DK在识别水中的CN–方面具有一定的实际应用前景。

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