Synthesis and structural characterization of homochiral 2D coordination polymers of zinc and copper with conformationally flexible ditopic imidazolium-based dicarboxylate ligands

Different novel coordination polymers containing zinc, 1-4, and copper, 5-8, metals, connected via chiral imidazolium-based dicarboxylate ligands, [L ] , were isolated by reaction between zinc acetate or copper acetate and enantiomerically pure HL compounds. They were characterised and structurally...

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Veröffentlicht in:Dalton transactions : an international journal of inorganic chemistry 2017, Vol.46 (2), p.471-482
Hauptverfasser: Nicasio, Antonio I, Montilla, Francisco, Álvarez, Eleuterio, Colodrero, Rosario P, Galindo, Agustín
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Sprache:eng
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Zusammenfassung:Different novel coordination polymers containing zinc, 1-4, and copper, 5-8, metals, connected via chiral imidazolium-based dicarboxylate ligands, [L ] , were isolated by reaction between zinc acetate or copper acetate and enantiomerically pure HL compounds. They were characterised and structurally identified by X-ray diffraction methods (single crystal and powder). These compounds are two-dimensional homochiral coordination polymers, [M(L ) ] , in which the metal ions are coordinated by the two carboxylate groups of [L ] anions in a general bridging monodentate μ -κ -O ,κ -O fashion that afforded tetrahedral metal coordination environments for zinc, 1-4, and square planar for copper, 5-8, complexes. In all the compounds the 3D supramolecular architecture is constructed by non-covalent interactions between the hydrophobic parts (R groups) of the homochiral 2D coordination polymers and, in some cases, by weak C-HO non-classical hydrogen bonds that provided, in general, a dense crystal packing. DFT calculations on the [L ] anions confirmed their conformational flexibility as ditopic linkers and this fact makes possible the formation of different coordination polymers for four-coordinated metal centers. Preliminary studies on the Zn-catalyzed synthesis of chiral α-aminophosphonates were carried out and, unfortunately, no enantioselectivity was observed in these reactions.
ISSN:1477-9226
1477-9234
DOI:10.1039/c6dt03712g