Department of Chemistry, Faculty of Sciences, University of Guilan, Rasht, Iran.
Department of Chemistry, Faculty of Sciences, University of Guilan, Rasht, Iran.
Spectrochim Acta A Mol Biomol Spectrosc. 2020 Sep 5;238:118439. doi: 10.1016/j.saa.2020.118439. Epub 2020 May 3.
A new chemosensor based on the thiazolylazo-quinazolinone hybrid (TAQH) was designed and synthesized for naked-eye sensitive detection of F and Sin aqueous acetonitrile solution. Spectral characterization of TAQH using FT-IR, H NMR, and C NMR analysis revealed that the probe TAQH was successfully synthesized using a two steps reaction, including the diazotization-coupling and condensation reactions, respectively. The ion sensing ability of TAQH toward a wide range of anions and metal ions was evaluated by naked-eye detection method and UV-Vis absorption spectroscopy. The chemosensor TAQH displayed a fast and clear color change from yellow to red in the presence of F and S ions, enabling easily detect with the naked eye. This clear color change is due to the effective interaction of the basic F and S anions with hydroxyl group of chemosensor as a binding site. The experimental data also revealed that the F and S ions were sensed by the probe TAQH over a wide pH range from 3 to 8. The results also confirmed that the TAQH has a wide linear detection range for F and S ions. From UV-vis titration experiment, the limit of detection (LOD) for F and S ions was found to be 3.1 μM and 5.7 μM, respectively. For quantitative measurements, the paper test strips containing TAQH were successfully fabricated and applied to detect F and S ions in aqueous solutions. Furthermore, Job's plot based on spectroscopic data showed one-to-one stoichiometry for the interaction of anions with probe TAQH. Therefore, the proposed chemosensor with excellent features like the cost-effective, high sensitively and selectively and short response times can be utilized in any physical and biological conditions.
一种基于噻唑偶氮喹唑啉酮杂合(TAQH)的新化学传感器被设计和合成,用于在裸眼敏感检测 F 和 Sin 水溶液中的乙腈溶液。通过傅里叶变换红外光谱(FT-IR)、核磁共振(1H NMR 和 13C NMR)分析对 TAQH 的光谱特征进行了表征,结果表明探针 TAQH 是通过两步反应成功合成的,分别是重氮化偶联和缩合反应。通过肉眼检测法和紫外可见吸收光谱法评价了 TAQH 对广泛存在的阴离子和金属离子的离子传感能力。在 F 和 S 离子存在的情况下,化学传感器 TAQH 显示出从黄色到红色的快速和明显的颜色变化,用肉眼很容易检测到。这种明显的颜色变化是由于 F 和 S 阴离子与化学传感器的羟基作为结合位点的有效相互作用。实验数据还表明,在 pH 值为 3 到 8 的宽范围内,探针 TAQH 可以检测到 F 和 S 离子。结果还证实,TAQH 对 F 和 S 离子具有宽的线性检测范围。从紫外可见滴定实验中,发现 F 和 S 离子的检测限(LOD)分别为 3.1 μM 和 5.7 μM。对于定量测量,成功制备了含有 TAQH 的纸条,并将其应用于检测水溶液中的 F 和 S 离子。此外,基于光谱数据的 Job 图表明阴离子与探针 TAQH 的相互作用具有一比一的化学计量关系。因此,所提出的化学传感器具有成本效益高、灵敏度和选择性高、响应时间短等优点,可以在任何物理和生物条件下使用。