Department of Chemistry, Karnatak University, Dharwad 580003, India.
Laser Spectroscopy (DRDO/KU) Programme, Department of Physics, Karnatak University, Dharwad, 580003, India.
Anal Methods. 2024 Mar 28;16(13):1934-1947. doi: 10.1039/d4ay00252k.
Cation and anion sensing is vital owing to their universal dispersion in ecosystems and biological functions. It has been shown that fluorescent receptors based on organic platforms are efficient for detecting a number of ions and have many advantages such as low cost, superior sensitivity and simplicity in installation. This study demonstrates the design and synthesis of a novel receptor ()-3-[(3,5-di--butyl-2-hydroxybenzylidene)amino]-2-(pyren-1-yl)-2,3-dihydroquinazolin-4(1)-one (DTQ) for the rapid recognition of Zn(II) ions. DTQ exhibited a significant fluorometric "turn-on" characteristic towards Zn(II) at 444 nm in aqueous acetonitrile by inhibiting the photo-induced electron transfer (PET) and -CN- process. The ESI-MS analysis and Job's plot experimental results confirmed stoichiometric 1 : 1 complex formation between DTQ and Zn(II). Fluorometric investigations revealed the detection limit and association constant of DTQ towards Zn(II), which were found to be 13.4 nM and 1.47 × 10 M, respectively. DTQ was employed to sense Zn(II) on low-cost test strips. The present research findings imply that DTQ can function as an effective sensor for Zn(II).
由于阳离子和阴离子在生态系统和生物功能中的普遍分布,它们的传感至关重要。已经表明,基于有机平台的荧光受体可有效检测多种离子,具有成本低、灵敏度高、安装简单等优点。本研究设计并合成了一种新型受体()-3-[(3,5-二--丁基-2-羟基苯亚甲基)氨基]-2-(芘-1-基)-2,3-二氢喹唑啉-4(1)-酮 (DTQ),用于快速识别 Zn(II)离子。在水-乙腈中,DTQ 对 Zn(II)表现出显著的荧光“开启”特性,在 444nm 处,通过抑制光诱导电子转移 (PET)和-CN-过程。ESI-MS 分析和 Job 图实验结果证实了 DTQ 与 Zn(II)之间形成了化学计量比为 1∶1 的配合物。荧光研究表明,DTQ 对 Zn(II)的检测限和结合常数分别为 13.4 nM 和 1.47×10 M。DTQ 被用于在低成本试纸上检测 Zn(II)。本研究结果表明,DTQ 可以作为一种有效的 Zn(II)传感器。