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Bis(μ-1,4-di-hydro-pyridin-4-one-κ<sup>2</sup> <i>O</i>:<i>O</i>)di-μ-perchlorato-κ<sup>4</sup> <i>O</i>:<i>O</i>'-bis-[aqua-(1,4-di-hydro-pyridin-4-one-κ<i>O</i>)copper(II)] tetra-aqua-bis-(1,4-di-hydropyridin-4-one-κ<i>O</i>)copper(II) tetra-kis-(perchlorate) 1,4-di-hydro-pyridin-4-one disolvate.

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CuBr2 complexes with 3,5-disubstituted pyridine ligands.

Christopher P Landee1, Diane A Dickie2, Mark M Turnbull3

  • 1Dept. of Physics, Clark University, 950 Main St., Worcester, MA 01610, USA.

Acta Crystallographica. Section E, Crystallographic Communications
|March 12, 2025
PubMed
Summary

New coordination polymers were synthesized using copper(II) bromide and substituted pyridines. These polymers feature bibromide-bridged copper(II) chains, with differing intermolecular interactions observed in the solid-state structures.

Keywords:
3,5-di­chloro­pyridine3,5-di­methyl­pyridinecopper(II) bromidecrystal structure

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Area of Science:

  • Coordination Chemistry
  • Materials Science
  • Crystallography

Background:

  • Copper(II) bromide serves as a versatile precursor for synthesizing coordination polymers.
  • Substituted pyridines, such as 3,5-dichloropyridine and 3,5-dimethylpyridine, can act as ligands in metal-organic frameworks.
  • Understanding the self-assembly of metal-ligand complexes is crucial for designing novel materials.

Purpose of the Study:

  • To synthesize and characterize novel coordination polymers of copper(II) with 3,5-dichloropyridine and 3,5-dimethylpyridine.
  • To investigate the structural features, including bridging ligands and intermolecular interactions, of the resulting coordination polymers.
  • To explore the influence of pyridine substituents on the crystal packing and dimensionality of the copper(II) coordination networks.

Main Methods:

  • Reaction of copper(II) bromide with 3,5-dichloropyridine and 3,5-dimethylpyridine.
  • Isolation and single-crystal X-ray diffraction analysis of the resulting coordination polymers.
  • Characterization of the coordination polymer structures, including bond distances and intermolecular interactions.

Main Results:

  • Two coordination polymers, [CuBr2(3,5-Cl2py)2] (1) and [CuBr2(3,5-Me2py)2] (2), were successfully synthesized.
  • Both compounds exhibit bibromide-bridged copper(II) chains with an average Cu⋯Cu distance of 3.93(9) Å.
  • Polymer 1 displays linking via non-classical hydrogen bonds and halogen bonds, while polymer 2 shows only non-classical hydrogen bonds.

Conclusions:

  • The reaction of copper(II) bromide with substituted pyridines yields one-dimensional coordination polymers.
  • The nature of the pyridine substituent influences the intermolecular interactions and crystal packing in the solid state.
  • Bibromide bridging is a common motif in these copper(II) coordination polymer systems.