Manickam Saravanakumar, Iyer Sathiyanarayanan Kulathu
Department of Chemistry, School of Advanced Sciences, VIT University Vellore-632014 India
RSC Adv. 2020 Mar 23;10(20):11791-11799. doi: 10.1039/d0ra00623h. eCollection 2020 Mar 19.
Herein, the turn-off fluorescence sensor of 2-((4'-(7,8,13,14-tetrahydrodibenzo[,]phenanthridin-5-yl)-[1,1'-biphenyl]-4-yl)methylene)malanonitrile (7) was developed for the recognition of CN ions and studied using different spectroscopic techniques. The selective recognition of CN ions by 7 was investigated UV-vis spectroscopy and fluorescence studies in acetonitrile solvent, which exhibited an obvious color change from orange to colorless under 365 UV light. The sensor compound 7 possesses a high binding constant ( ) for CN ions in the order of 5.22 × 10 M. The results from the interference studies revealed that probe 7 shows high sensing selectivity and sensitivity for CN ions over other competitive anions. Probe 7 interacts with cyanide to form a 1 : 1 adduct, and this mechanism was further verified by H NMR titration, Job's plot analyses and DFT studies. The sensor probe 7 exhibits advantages such as low limit of detection (LOD) of 39.3 nM, fast response and sensing in a wide pH range of 3 to 11. The practical application of 7 was successfully demonstrated for the determination of CN ions in test paper strips and various water samples.
在此,开发了2-((4'-(7,8,13,14-四氢二苯并[,]菲啶-5-基)-[1,1'-联苯]-4-基)亚甲基)丙二腈(7)的关闭型荧光传感器用于识别CN离子,并使用不同的光谱技术进行了研究。通过紫外可见光谱和在乙腈溶剂中的荧光研究,研究了7对CN离子的选择性识别,其在365紫外光下呈现出从橙色到无色的明显颜色变化。传感器化合物7对CN离子具有高达5.22×10 M量级的高结合常数()。干扰研究结果表明,探针7对CN离子显示出高于其他竞争性阴离子的高传感选择性和灵敏度。探针7与氰化物相互作用形成1:1加合物,并且通过1H NMR滴定、Job曲线分析和DFT研究进一步验证了该机制。传感器探针7具有诸如39.3 nM的低检测限(LOD)、快速响应以及在3至11的宽pH范围内传感等优点。成功证明了7在试纸条和各种水样中测定CN离子的实际应用。