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A highly selective and sensitive fluorescent chemosensor and its application for rapid on-site detection of Al3+

机译:一种高度选择性和敏感的荧光化学传感器及其在AL3 +快速现场检测的应用

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摘要

In this paper, a simple naphthalene-based derivative (HL) has been designed and synthesized as a Al3+-selective fluorescent chemosensor based on the PET mechanism. HL exhibited high selectivity and sensitivity towards Al3+ over other commonly coexisting metal ions in ethanol with a detection limit of 2.72 nM. The 1:1 binding stoichiometry of the complex (HL-Al3+) was determined from the Job's plot based on fluorescence titrations and the ESI-MS spectrum data. Moreover, the binding site of HL with Al3+ was assured by the H-1 NMR titration experiment. The binding constant (Ka) of the complex (HL-Al3+) was calculated to be 5.06 x 10(4) M-1 according to the Benesi-Hildebrand equation. In addition, the recognizing process of HL towards Al3+ was chemically reversible by adding Na(2)EDTA. Importantly, HL could directly and rapidly detect aluminum ion through the filter paper without resorting to additional instrumental analysis. (C) 2017 Elsevier B.V. All rights reserved.
机译:本文基于PET机制设计并合成了一种简单的萘基衍生物(HL)作为Al3 +式 - 选择性荧光化学传感器。 HL在乙醇中的其他通常共存的金属离子上表现出高选择性和敏感性,检测限为2.72nm。 基于荧光滴定和ESI-MS谱数据,从作业的曲线测定复合物(HL-AL3 +)的1:1结合化学计量。 此外,通过H-1 NMR滴定实验确保了HL与Al3 +的H1的结合位点。 根据Benesi-Hildebrand方程,将复合物(HL-Al3 +)的结合常数(Ka)计算为5.06×10(4)m-1。 此外,通过加入Na(2)EDTA,将HL朝向Al3 +的识别方法进行化学可逆。 重要的是,HL可以通过滤纸直接且快速地检测铝离子,而无需借助额外的仪器分析。 (c)2017年Elsevier B.V.保留所有权利。

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