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A highly sensitive and selective Cd-MOF fluorescent probe for the detection of His, NB, TC and PTH and its applications in real samples. | LitMetric

A highly sensitive and selective Cd-MOF fluorescent probe for the detection of His, NB, TC and PTH and its applications in real samples.

Spectrochim Acta A Mol Biomol Spectrosc

School of Chemistry and Chemical Engineering, Shaanxi Key Laboratory of Chemical Reaction Engineering, Laboratory of New Energy & New Function Materials, Yanan University, Yan'an, Shaanxi 716000, China.

Published: February 2024

AI Article Synopsis

  • - A new metal-organic framework (MOF), Cd-MOF, was synthesized using a solvothermal method, featuring a unique structure that includes specific ligands and demonstrates good thermal stability.
  • - Cd-MOF exhibits strong fluorescence characteristics, making it effective for detecting various substances like histidine, nitrobenzene, tetracycline, and pyrimethanil in water at very low concentrations (down to 0.01 µM).
  • - The MOF's capability for real-world application was tested through its effectiveness in recovering PTH from water samples and apple peels, yielding high recovery rates (95.3-101.2%), while the fluorescence quenching mechanism was analyzed for its detection processes.

Article Abstract

A novel metal-organic framework (MOF) with the formula of [Cd(CIA)(4,4'-BB)·HO]·HO (Cd-MOF) (HCIA = 5-methoxyisophthalic acid, 4,4'-BB: 4,4'-bis((1H-imidazol-1-yl)methyl)-1,1'-biphenyl) has been designed and synthesized through solvothermal reaction. The structure was characterized by TG, IR, PXRD, elemental analysis, single-crystal X-ray diffraction and XPS. The coordination pattern of the fully deprotonated ligand (CIA) in Cd-MOF is μ-к: к: к. The complex is found to be a three-dimensional reticular material with good thermal stability. Further study revealed that Cd-MOF has good fluorescence performance and can be used as a fluorescent probe for sensitive detection of histidine (His), nitrobenzene (NB), tetracycline (TC) and pyrimethanil (PTH) in water. Four cycles experiments can be achieved with a low detection limit. The detection limits were 0.3 µM (His), 0.05 µM (NB), 0.2 µM (TC) and 0.01 µM (PTH), respectively. To verify the feasibility of detecting PTH in real samples, we further explored it in water samples and apple peels. The spiked recoveries were 95.3-99.4 % and 97.2-101.2 %, respectively. Finally, the fluorescence quenching mechanism of Cd-MOF in His, NB, TC and PTH detection is discussed in detail.

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Source
http://dx.doi.org/10.1016/j.saa.2023.123619DOI Listing

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