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Updated: Jun 23, 2026

A Technical Guide for Performing Spectroscopic Measurements on Metal-Organic Frameworks
Published on: April 28, 2023
Fluorescence/Electrochemical Dual-Mode Sensor Based on a Nickel Metal-Organic Framework
Xue Wang1, Huiying Sun1, Xiao Li1
1School of Chemical and Environmental Engineering, Jilin Provincial Science and Technology Innovation Centre of Optical Materials and Chemistry, Jilin Provincial International Joint Research Center of Photo-Functional Materials and Chemistry, Changchun University of Science and Technology, Changchun 130022, People's Republic of China.
Abstract:
This study successfully developed a new dual-mode sensor material based on the nickel metal-organic framework (Ni-MOF) [Ni(tatrz)1.5(5-MIA)·H2O] (CUST-986) (tatrz = 1-(9-(1H-1,2,4-triazol-1-yl)anthracen-10-yl)-1H-1,2,4-triazole, 5-MIA = 5-methylisophthalic acid, CUST = Changchun University of Science and Technology) for a highly efficient detection of 2,4,6-trinitrophenol (TNP). In fluorescence sensing mode, CUST-986 demonstrates exceptional selective recognition capability for TNP, with a high quenching constant (Ksv) of 1.676 × 105 M-1 and an ultralow detection limit (LOD) of 69.3 nM. In electrochemical detection mode, the modified electrode achieves a TNP detection limit of 0.48 μM. Real environmental sample tests show spike recovery rates of 80.3-93.6%, indicating good potential for practical applications with long-term stability. Through characterization techniques including powder X-ray diffraction, UV-vis, DFT calculations, and fluorescence lifetime measurements, the mechanism of electron transfer and the inner filter effect was elucidated. This bifunctional MOF sensor provides a new detection solution for environmental monitoring and public safety applications.
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