College of Chemical and Environmental Science, Inner Mongolia Normal University, Hohhot 010022, PR China.
College of Chemical and Environmental Science, Inner Mongolia Normal University, Hohhot 010022, PR China.
Spectrochim Acta A Mol Biomol Spectrosc. 2019 Mar 15;211:1-8. doi: 10.1016/j.saa.2018.11.040. Epub 2018 Nov 16.
A novel fluorescent chemosensor based on crown ether-acylhydrazone (L) was synthesized and characterized. The sensor L exhibited high selectivity and sensitive recognition towards Al through a significant "turn-on" fluorescence response at 444 nm in methanol solution. While, other competitive ions had no such significant effects on the fluorescence emission. The associated spectra behavior might be attributed to the formation of 2:1 L-Al complex and the proposed binding mode of L-Al was demonstrated by the fluorescence titration profiles, Job's plot, ESI-MS spectrometry, H NMR titration and the IR analysis. Besides the high reproducibility of the optical signals, very low detection limit of 0.24 μM was calculated. The association constant (K) for L-Al complex was about 5.56 × 10 ± 8.19 × 10 M. The results of various experiments showed the sensor L followed a turn-on mechanism via of the suppression of CN isomerization and excited state intramolecular proton transfer (ESIPT) process and the activation of chelation-enhanced fluorescence (CHEF). Theoretical calculations using DFT/B3LYP method was also used to get insight into the sensing mechanism and electronic structure of L. The sensor L could be conceived as an effective and practical fluorescent chemosensor for determination of Al.
基于冠醚-酰腙(L)的新型荧光化学传感器被合成并进行了表征。该传感器 L 在甲醇溶液中对 Al 具有高度选择性和灵敏的识别能力,通过在 444nm 处显著的“开启”荧光响应。而其他竞争离子对荧光发射没有如此显著的影响。这种相关的光谱行为可能归因于 2:1 L-Al 配合物的形成,并且通过荧光滴定曲线、Job 图、ESI-MS 光谱、H NMR 滴定和 IR 分析证明了 L-Al 的建议结合模式。除了光学信号的高重现性外,还计算出非常低的检测限为 0.24µM。L-Al 配合物的结合常数(K)约为 5.56×10±8.19×10 M。各种实验的结果表明,传感器 L 通过抑制 CN 异构化和激发态分子内质子转移(ESIPT)过程以及螯合增强荧光(CHEF)的激活,遵循开启机制。还使用 DFT/B3LYP 方法进行理论计算,以深入了解 L 的传感机制和电子结构。该传感器 L 可以被设想为一种用于测定 Al 的有效且实用的荧光化学传感器。