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Understanding the Nonlinear Hammett Relationship in Osmylation of Olefins with OsO 4 -Amine Ligands: Importance of Singlet-Diradical Character.

Yi-Hui DengTian-Yu SunYun-Dong Wu
Published in: The Journal of organic chemistry (2024)
Although the concerted [3 + 2] mechanism of osmium-catalyzed asymmetric dihydroxylation has been generally accepted, the unusual nonlinear Hammett relationship induced by amine-type ligands remains unexplained. To understand this, we carried out a density functional theory (DFT) study for the osmylation of substituted styrenes by the following: OsO 4 , OsO 4 -pyridine, OsO 4 -4-cyanopyridine, OsO 4 -4-pyrrolidinopyridine, and OsO 4 -quinuclidine. Calculations using the M06 functional successfully reproduce the experimentally observed nonlinear relationships. The transition states exhibit considerable singlet-diradical character, which causes the nonlinear Hammett relationship. Regardless of the presence or absence of an amine-type ligand, an electron donation from styrene to OsO 4 is observed, indicating no mechanistic change. Calculations indicate that the electronic interaction between the amine-type ligand and styrene also influences the reaction rate.
Keyphrases
  • density functional theory
  • molecular dynamics
  • molecular dynamics simulations
  • ionic liquid
  • energy transfer