Issue 18, 2022

A multifunctional fluorescent Cd-MOF probe: its synthesis, structure, and sensing properties

Abstract

A 3D structure of Cd-MOF with a 1D cavity based on 4-(2,2′:6′,2′′'-terpyridine)-3,5-benzenedicarboxylic acid ligand (H2dbta) was obtained, namely, [Cd(dbta)]n (1). The size of the pore in complex 1 is 10.59 × 11.75 Å2. In addition, the surface area and pore size distribution of complex 1 were measured. The properties of the multifunctional fluorescent probe complex 1 were characterized in detail. Complex 1 can effectively identify CrO42− and Cr2O72− ions, and also has high accuracy and recoverability for the identification of Fe3+ ions and TNP molecules. The limits of detection for the tested substances were further determined. The sensing mechanisms of the fluorescent probe complex 1 for the above analytes were comprehensively explored.

Graphical abstract: A multifunctional fluorescent Cd-MOF probe: its synthesis, structure, and sensing properties

Supplementary files

Article information

Article type
Paper
Submitted
21 Jan 2022
Accepted
31 Mar 2022
First published
31 Mar 2022

New J. Chem., 2022,46, 8636-8643

A multifunctional fluorescent Cd-MOF probe: its synthesis, structure, and sensing properties

L. Liu, Y. Jia, Chen, D. Li and M. Hu, New J. Chem., 2022, 46, 8636 DOI: 10.1039/D2NJ00358A

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