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基于安替比林的荧光探针用于独特检测 Al 和 Zn 及其 AIE 行为。

An antipyrine based fluorescent probe for distinct detection of Al and Zn and its AIEE behaviour.

机构信息

Department of Chemistry, Vidyasagar University, 721 102, Midnapore, W.B., India.

出版信息

Photochem Photobiol Sci. 2020 May 20;19(5):681-694. doi: 10.1039/c9pp00472f.

Abstract

A simple antipyrine based fluorescent probe, 4-[(2-hydroxy-3-methoxy-benzylidene)-amino]-1,5-dimethyl-2-phenyl-1,2-dihydro-pyrazol-3-one (OVAP), has been successfully synthesized using a one-step condensation method. It exhibits dual sensing properties toward Al3+ and Zn2+ in the presence of other relevant metal ions and also displays novel aggregation induced emission enhancement (AIEE) characteristics in its aggregated/solid state. Aggregated OVAP microstructures with interesting morphologies have been synthesized using SDS as a morphology directing agent. Morphologies of the particles are characterized using optical microscopy. Photophysical properties of the as-synthesized OVAP hydrosol are studied using UV-Vis absorption, steady state and time resolved fluorescence spectroscopy. The 'turn on' luminescence property of OVAP is used for the selective detection of trace amounts of Al3+ and Zn2+ and a significant turn on fluorescence enhancement over ∼100-fold is triggered via chelation-enhanced fluorescence (CHEF) through complex formation. The 1 : 1 stoichiometry of each sensor metal ion complex is observed from Job's plot based on UV-Vis absorption titration. The LODs for Al3+ and Zn2+ are found to be 1.05 nM and 2.35 nM, respectively. Notably, the sensor, OVAP, is further demonstrated using a molecular INHIBIT logic gate.

摘要

一种简单的基于安替比林的荧光探针,4-[(2-羟基-3-甲氧基-亚苄基)-氨基]-1,5-二甲基-2-苯基-1,2-二氢-吡唑-3-酮(OVAP),已经成功地通过一步缩合方法合成。它在存在其他相关金属离子的情况下对 Al3+和 Zn2+具有双重传感性能,并且在其聚集/固态中显示出新颖的聚集诱导发射增强(AIEE)特性。使用 SDS 作为形态导向剂合成了具有有趣形态的聚集 OVAP 微结构。使用光学显微镜对颗粒的形态进行了表征。使用紫外可见吸收、稳态和时间分辨荧光光谱研究了所合成的 OVAP 水溶胶的光物理性质。OVAP 的“开启”发光特性用于选择性检测痕量的 Al3+和 Zn2+,并且通过螯合增强荧光(CHEF)通过形成配合物触发了超过 100 倍的显著荧光增强。从基于紫外可见吸收滴定的 Job 图观察到每个传感器金属离子配合物的 1:1 化学计量比。发现 Al3+和 Zn2+的 LOD 分别为 1.05 nM 和 2.35 nM。值得注意的是,进一步使用分子 INHIBIT 逻辑门证明了传感器 OVAP。

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