Deprotonation Induced Ligand Oxidation in a Ni-II Complex of a Redox Noninnocent N-1-(2-Aminophenyl)benzene-1,2-diamine and Its Use in Catalytic Alcohol Oxidation

Open Access
Authors
  • R. Sikari
  • S. Sinha
  • U. Jash
  • S. Das
Publication date 2016
Journal Inorganic Chemistry
Volume | Issue number 55 | 12
Pages (from-to) 6114-6123
Organisations
  • Faculty of Science (FNWI) - Van 't Hoff Institute for Molecular Sciences (HIMS)
Abstract
Two nickel(II)-complexes, [Ni-II(H3L)(2)] (ClO4)(2) ( [1]-(ClO4)(2)) and [Ni-II(HL)(2)] (2), containing the redox-active tridentate ligand N-1-(2-aminophenyl)benzene-1,2-diamine (H3L) have been synthesized. Complex [1] (ClO4)(2) is octahedral containing two neutral H3L ligands in a facial coordination mode, whereas complex 2 is a singlet diradical species with approximately planar configuration at the tetracoordinate metal atom with two pendant NH2 side arms from each of the coordinated ligands. Both complexes are found to be chemically interconvertible; complex [1](2+) gets converted to complex 2 when exposed to base and oxygen via simultaneous deprotonation and oxidation of the coordinated ligands. Molecular and electronic structures of the isolated complexes are scrutinized thoroughly by various spectroscopic techniques, single crystal X-ray crystallography, and density functional theory. The observed dissociation of a ligand arm upon oxidation of the ligand was exploited to bring about catalytic alcohol oxidation using coordinatively saturated complex [1] (ClO4)(2) as a catalyst precursor. Both the complexes [1] (ClO4)(2) and 2 were tested for catalytic oxidation of both primary and secondary alcohols.
Document type Article
Note With supporting information
Language English
Related dataset CCDC 1498430: Experimental Crystal Structure Determination CCDC 1498431: Experimental Crystal Structure Determination
Published at https://doi.org/10.1021/acs.inorgchem.6b00646
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Deprotonation Induced Ligand Oxidation (Final published version)
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