Dutta Srishti, Sharma Vanshika, Pandey Abhilash, Kumar Dishen, Sahu Devanand, Patra Goutam Kumar
Department of Chemistry, Guru Ghasidas Vishwavidyalaya, Bilaspur, (C.G), India.
J Fluoresc. 2025 Aug 27. doi: 10.1007/s10895-025-04528-z.
Herein we describe a quinoxaline mono Schiff base, synthesised from benzil and o-phenylene diamine that may be used as a fluorescent-colourimetric chemosensor to detect Ag ions in organic media with high selectivity and sensitivity over other competitive ions. The sensing processes were operated by visual change, absorption, and emission measurements, and the binding sites were confirmed by FTIR and single-crystal structure of the Ag(I)- complex. From Job-plot analysis, ESI-mass spectra and XRD studies 1:2 binding stoichiometry between host-guest was observed. The detection limit values for Ag obtained 7.9 × 10 M colorimetrically and 1.25 × 10 M fluorometrically. Moreover the receptor L could operate in a wide range of pH 6-11 including physiological pH, and can be successfully applied to environmental samples, BSA proteins and living cells for detecting Ag ion. Based on these findings, we think that the receptor L will be an impressive addition to the field of straightforward 2,3-Diphenylquinoxaline based Schiff base chemosensors for analytes.
在此,我们描述了一种由联苯甲酰和邻苯二胺合成的喹喔啉单席夫碱,它可用作荧光比色化学传感器,在有机介质中检测银离子时,相对于其他竞争性离子具有高选择性和高灵敏度。传感过程通过视觉变化、吸收和发射测量进行操作,结合位点通过FTIR和银(I)配合物的单晶结构得到证实。通过Job-曲线分析、电喷雾质谱和X射线衍射研究,观察到主体-客体之间的结合化学计量比为1:2。通过比色法得到的银的检测限为7.9×10 M,荧光法为1.25×10 M。此外,受体L可以在包括生理pH值在内的6-11的宽pH范围内工作,并且可以成功应用于环境样品、牛血清白蛋白蛋白质和活细胞中检测银离子。基于这些发现,我们认为受体L将是基于2,3-二苯基喹喔啉的直接席夫碱化学传感器领域中用于分析物的一个令人印象深刻的补充。