Reversible Redox Chemistry and Catalytic C(sp(3))-H Amination Reactivity of a Paramagnetic Pd Complex Bearing a Redox-Active o-Aminophenol-Derived NNO Pincer Ligand

Open Access
Authors
Publication date 2016
Journal Inorganic Chemistry
Volume | Issue number 55 | 17
Pages (from-to) 8603-8611
Organisations
  • Faculty of Science (FNWI) - Van 't Hoff Institute for Molecular Sciences (HIMS)
Abstract
The synthesis, spectroelectrochemical characterization (ultraviolet-visible and nuclear magnetic resonance), solid state structures, and computational metric parameters of three isostructural PdCI(NNO) complexes 1 [PdCl(NNOISQ)], 2 {[PdCl(NNOAP)](-1)}, and 5 {[PdCl(NNOIBQ)](+)} (NNO = o-aminophenol-derived redox-active ligand with a pendant pyridine) with different NNO oxidation states are described. The reduced diamagnetic complex 2 readily reacts with halogenated solvents, including lattice solvent from crystalline pure material, as supported by spectroscopic data and density functional theory calculations. Thorough removal of chlorinated impurities allows for modest catalytic turnover in the conversion of 4-phenylbutyl azide into N-protected 2-phenylpyrrolidine, which is the first example of a palladium-catalyzed radical-type transformation facilitated by a redox-active ligand as well as the first C-H amination mediated by ligand-to-substrate single-electron transfer.
Document type Article
Note With supporting information
Language English
Related dataset CCDC 1477970: Experimental Crystal Structure Determination
Published at https://doi.org/10.1021/acs.inorgchem.6b01192
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Reversible Redox Chemistry and Catalytic (Final published version)
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