Literature DB >> 27913928

Coordination complexes of 4-methylimidazole with ZnII and CuII in gas phase and in water: a DFT study.

Malek Boukallaba1,2, Boutheïna Kerkeni1,3, Christine Lepetit4,5, Dorothée Berthomieu6,7.   

Abstract

A quantum chemistry study of mononuclear metal coordination with four 4-methylimidazole ligands (4-MeIm) was investigated. The four complexes [Cu(4-MeIm)4]2+, [Cu(4-MeIm)4, H2O]2+, [Zn(4-MeIm)4]2+ and [Zn(4-MeIm)4, H2O]2+ were studied with particular attention to the Nπ or Nτ possible coordinations of the 4-MeIm ring with the metals, using different DFT methods. The results suggest that the Nτ coordination of 4-MeIm ring to ZnII or CuII is more favorable whatever the level of calculation. In contrast, the addition of one water molecule in the first coordination sphere of the metal ions provides five-coordinated complexes showing no Nπ or Nτ preferences. There is good agreement between the DFT-calculated structure and those available experimentally. When metal ions are four-fold coordinated, they adopt a tetrahedral geometry. When CuII and ZnII are five-fold coordinated, highly symmetric structures or intermediate structures are calculated. Similar energies are calculated for different structures, suggesting flat potential energy surfaces. The addition of implicit solvent modifies the calculated first coordination sphere, especially for [Cu(4-MeIm)4, H2O]2+ structures. The QTAIM and ELF topological analyses of the interaction between CuII and the neutral ligands, clearly indicate a dative bonding with a strong ionic character.

Entities:  

Keywords:  4-methylimidazole and water; Coordination complexes with ZnII or CuII; DFT; ELF topological analyses; Histidine; Implicit solvents; QTAIM

Year:  2016        PMID: 27913928     DOI: 10.1007/s00894-016-3167-x

Source DB:  PubMed          Journal:  J Mol Model        ISSN: 0948-5023            Impact factor:   1.810


  18 in total

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2.  Theoretical evaluation of electron delocalization in aromatic molecules by means of atoms in molecules (AIM) and electron localization function (ELF) topological approaches.

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Authors:  N J Blackburn; F C Rhames; M Ralle; S Jaron
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8.  Environmental influence on Zn-histidine complexes under no-packing conditions.

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9.  Structure of native and apo carbonic anhydrase II and structure of some of its anion-ligand complexes.

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10.  Structure of fully reduced bovine copper zinc superoxide dismutase at 1.15 A.

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