Two Cu complexes [Cu(CHNO)Cl] , , and [Cu(CHNO)Cl] , , have been synthesized. In the structure of the mononuclear complex , each ligand is coordinated to two metal centers. The basal plane around the Cu cation is formed by one chloride anion, one oxygen atom, one imino and one pyridine nitro-gen atom. The apical position of the distorted square-pyramidal geometry is occupied by a pyridine nitro-gen atom from a neighbouring unit, leading to infinite one-dimensional polymeric chains along the axis direction. Each chain is connected to adjacent chains by inter-molecular C-H⋯O and C-H⋯Cl inter-actions, leading to a three-dimensional network structure. The tetra-nuclear complex lies about a crystallographic inversion centre and has one core in which two Cu metal centers are mutually inter-connected two enolato oxygen atoms while the other two Cu cations are linked by a chloride anion and an enolato oxygen. An open-cube structure is generated in which the two open-cube units, with seven vertices each, share a side composed of two Cu ions bridged by two enolato oxygen atoms acting in a μ-mode. The Cu atoms in each of the two CuONCl units are connected by one μ-O and two μ-O atoms from deprotonated hydroxyl groups and one chloride anion to the three other Cu centres. Each of the penta-coordinated Cu cations has a distorted NOCl square-pyramidal environment. The Cu atoms in each of the two CuONCl units are connected by μ-O and μ-O atoms from deprotonated alcohol hy-droxy groups and one chloride anion to two other Cu ions. Each of the penta-coordinated Cu cations has a distorted NOCl square-pyramidal environment. In the crystal, a series of intra-molecular C-H⋯O and C-H⋯Cl hydrogen bonds are observed in each tetra-nuclear monomeric unit, which is connected to four tetra-nuclear monomeric units by inter-molecular C-H⋯O hydrogen bonds, thus forming a planar two-dimensional structure in the (01) plane.
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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6659337 | PMC |
http://dx.doi.org/10.1107/S2056989019008922 | DOI Listing |
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