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An Experimental and Quantum(QTAIM)Performance Study of a Proposed Molecular Chemosensor:A Quinazolinone-Based Sensor for Hg~(2+)Ion Detection

机译:分子化学传感器的实验与量子(QTAIM)性能研究:一种基于喹唑啉酮的Hg~(2+)离子检测传感器

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摘要

This work synthesized a novel colorimetric ligand based on the compound quinazolinone(Sensor)and investigated it.The sensing activity of the sensor toward different cation was studied.The sensor demonstrated a highly selective colorimetric sensing toward Hg~(2+)with a detection limit of 0.1 ppb and visual color change from colorless to Purple in methanol-water solvents(v/v,10,90).The cation binding character was determined using visual inspection,UV-Vis,and fluorescence analyses.In the computational part,the interaction between the receptor and Hg~(2+)ion was investigated using density functional theory(TD-DFT)and quantum theory of atoms in molecules(QTAIM)in the solution phase(in the presence of water as solvent and the CPCM model).Theoretical studies have shown that electronic properties such as energy gap,absorption energy,charge/energy transfer,and optical properties change dramatically in the presence of Hg~(2+)cations.Also,the effect of the electric field on the electronic properties of the sensor/Hg~(2+)complex improved the Hg~(2+)cation adsorption process.
机译:这项工作比色配体合成一本小说基于复合quinazolinone(传感器)和调查它。传感器对不同阳离子进行了研究。传感器表现出高度选择性比色检测对Hg ~ (2 +)十亿分之0.1的检出限和视觉颜色在甲醇-水改变从无色到紫色溶剂(v / v, 90)。确定使用目视检查、紫外可见和荧光分析。受体之间的相互作用Hg ~(2 +)离子研究使用密度功能理论(TD-DFT)和量子理论原子在分子(QTAIM)(在方案阶段水作为溶剂和CPCM的存在模型)。电子能量等属性差距,吸收能量,电荷/能量转移,在光学性质发生了巨大的变化Hg ~(2 +)阳离子的存在。电场对电子的性质传感器/ Hg ~(2 +)复杂的改善了Hg ~(2 +)阳离子吸附过程。

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  • 来源
    《Chemistry Select》 |2023年第9期|1-12|共12页
  • 作者单位

    Department of Chemistry,Physical Chemistry group,Lorestan University,Khorramabad,Iran;

    Department of Chemistry,Physical Chemistry group,University of Qom,Qom,Iran;

    Department of Chemistry,Catalysis Division,University of Isfahan,Isfahan,Iran;

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  • 原文格式 PDF
  • 正文语种 英语
  • 中图分类 化学;
  • 关键词

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