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基于咪唑并吡啶的用于选择性识别铁离子的荧光猝灭传感器及其在试纸条中的应用。

Imidazopyridine Based Fluorescent Turn-Off Sensor for Selective Recognition of Fe Ions and its Application in Test Strips.

作者信息

Manhas Akanksha, Sasan Sonakshi, Devi Lalita, Sharma Manu, Changotra Avtar, Kumar Pawan, Kapoor Kamal K

机构信息

Department of Chemistry, University of Jammu, Jammu, J&k, 180006, India.

Department of Chemistry and Chemical Sciences, Central University of Jammu, Jammu, J&K, 181143, India.

出版信息

J Fluoresc. 2025 May 17. doi: 10.1007/s10895-025-04359-y.

Abstract

A series of 2-ethoxycarbonyl imidazopyridines have been synthesised and characterised by various spectroscopic techniques (H NMR, C NMR, FTIR and HRMS). Among these compounds, 3e was selected for metal sensing applications due to its favourable photophysical properties. 3e demonstrated high selectivity and sensitivity for detecting Fe ions, even in the presence of other competing ions in a mixture of acetonitrile/water (1:9, v/v). It showed a turn-off fluorescence response with a fluorescence detection limit of 3.9 µM. The decrease in the fluorescence intensity of 3e is due to paramagnetic quenching resulting from its interaction with Fe ions. Job's plot analysis indicated a 1:1 binding ratio between 3e and Fe. Density Functional Theory (DFT) calculations revealed a reduced HOMO-LUMO energy gap for the 3e-Fe complex, suggesting successful complexation. The binding constant, calculated using the Benesi-Hildebrand equation, was determined to be 2.845 × 10 M, further confirming the strong interaction between 3e and Fe. Time-based studies revealed excellent photostability of 3e and its rapid response time for detecting Fe. Real-time detection of Fe was successfully achieved using sensor-coated filter paper, demonstrating the practical utility of 3e for rapid assays in real samples.

摘要

一系列2-乙氧羰基咪唑并吡啶已被合成,并通过各种光谱技术(氢核磁共振、碳核磁共振、傅里叶变换红外光谱和高分辨质谱)进行了表征。在这些化合物中,3e因其良好的光物理性质被选用于金属传感应用。3e对检测铁离子表现出高选择性和灵敏度,即使在乙腈/水(1:9,v/v)混合物中存在其他竞争离子的情况下也是如此。它呈现出荧光猝灭响应,荧光检测限为3.9 μM。3e荧光强度的降低是由于其与铁离子相互作用导致的顺磁猝灭。Job曲线分析表明3e与铁的结合比为1:1。密度泛函理论(DFT)计算显示3e-铁配合物的最高占据分子轨道-最低未占据分子轨道能隙减小,表明成功形成了配合物。使用贝内西-希尔德布兰德方程计算的结合常数为2.845×10 M,进一步证实了3e与铁之间的强相互作用。基于时间的研究表明3e具有出色的光稳定性及其检测铁的快速响应时间。使用涂有传感器的滤纸成功实现了铁的实时检测,证明了3e在实际样品快速分析中的实用性。

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