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Ru II complexes of 1,2,3-triazole appended tertiary phosphines, [P(Ph){( o -C 6 H 4 )(1,2,3-N 3 C(Ph)CH} 2 ] and [P(Ph){ o -C 6 H 4 (CCH)-(1,2,3-N 3 -Ph)} 2 ]: highly active catalysts for transfer hydrogenation of carbonyl/nitro compounds and for α-alkylation of ketones.

Pavan K NamdeoSonu SheokandBasvaraj S KoteLatchupatula RadhakrishnaHarish S KunchurPrateek SainiSrinivasan RamakrishnanMaravanji S Balakrishna
Published in: Dalton transactions (Cambridge, England : 2003) (2022)
The synthesis of two new 1,2,3-triazole appended monophosphines [P(Ph){( o -C 6 H 4 )(1,2,3-N 3 C(Ph)CH} 2 ] (1) and [P(Ph){ o -C 6 H 4 (CCH)(1,2,3-N 3 -Ph)} 2 ] (2) and their Ru II complexes is described. The reactions of 1 and 2 with [Ru(PPh 3 ) 3 Cl 2 ] in a 1 : 1 molar ratio produced cationic complexes 3 and 4, respectively. Both the complexes showed very high catalytic activity towards transfer hydrogenation, nitro reduction, and α-alkylation reactions and afforded the corresponding products in good to excellent yields. The free energy of β-hydride elimination from the respective Ru-alkoxide intermediates, a key mechanistic step common to all the three catalytic pathways, was calculated to be close to ergoneutral by density functional theory-based calculations, which is posited to rationalize the catalytic activity of 3. The reduction of aromatic nitro compounds was found to be highly chemoselective and produced the corresponding amines as major products even in the presence of a carbonyl group. The triazolyl-N2 coordinated Ru II -NPN complex 3 showed better catalytic activity compared to the triazolyl-N3 coordinated complex 4.
Keyphrases
  • density functional theory
  • molecular dynamics
  • molecular dynamics simulations
  • amino acid
  • quantum dots
  • ionic liquid
  • monte carlo