4.6 Article

Synthesis, crystal structures and selective luminescence sensing property of Zn(II) coordination polymers based on semi-rigid tricarboxylic acid ligands

Journal

JOURNAL OF MOLECULAR STRUCTURE
Volume 1263, Issue -, Pages -

Publisher

ELSEVIER
DOI: 10.1016/j.molstruc.2022.133162

Keywords

Semi-rigid tricarboxylic acid ligand; Coordination polymer; Fluorescence recognition; Metal cations; Anions; Organic small molecules

Funding

  1. Science and Technology Project of Lanzhou [2021-1-138]
  2. Science and Technology Project of Gansu [21JR11RA017, 21JR1RA207]
  3. Fundametal Reserach Founds for the Cen-tral Universities [31920210139]
  4. Innovation and Entrepreneurship Talent Project of Lanzhou [2019-RC-50]

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Two novel Zn-based coordination polymers with excellent fluorescence performances were successfully synthesized in this study. These polymers exhibited selective recognition response to specific ions and molecules in aqueous solutions.
Herein, two novel Zn-based coordination polymers [Zn(HL)(1,10-phen)(H2O)](n) (1) and [Zn-2(HL)(2)(2,2'-bipy)(2)](n) (2) have been successfully synthesized via solvothermal method by using the semi-rigid tricarboxylic acid ligand (H3L:3-[(1-carboxynaphthalen-2-yl)oxy] phthalic acid) and two different nitrogen-containing heterocyclic ligands (1,10-phenanthroline, 2,2'-bipyridine). A single-crystal X-ray analysis reveals that these two novel Zn-based coordination polymers 1 and 2 exhibit a one dimensional (1D) chain structures. Moreover, two novel Zn-based coordination polymers 1 and 2 exihit excellent fluorescence performances, and selectively recognition response to Ni2+, MnO4-, Cr2O72-, nitrobenzene and nitromethane through the luminescence quenching effects in aqueous solutions. The possible fluorescence recognition mechanism of 1 and 2 toward Ni2+, MnO4-, Cr2O72- are investigated, which may be attribute to the synergistic effects of energy competitive absorption and weak interaction. Whereas the fluorescence quenching behaviors of 1 and 2 toward nitrobenzene and nitromethane, owing to the existence of a strong electron-withdrawing group which can obtain excited-state electrons, and leading to the occurence of electrons transfer. These results indicating that Zn-based coordination polymers have potential application values in fluorescent recognition. (C) 2022 Elsevier B.V. All rights reserved.

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