| Literature DB >> 31190467 |
Xiang-Yu Chen1, Maoping Pu1, Hong-Gang Cheng1, Theresa Sperger1, Franziska Schoenebeck1.
Abstract
S-aryl phosphorothioates are privileged motifs in pharmaceuticals, agrochemicals, and catalysts; yet, the challenge of devising a straightforward synthetic route to enantioenriched S-aryl phosphorothioates has remained unsolved to date. We demonstrate herein the first direct C-SP(=O)(OR')(OR'') coupling of diverse and chiral phosphorothioate salts with aryl iodides, enabled by an air- and moisture-stable PdI dimer. Our mechanistic and computational data suggest distinct dinuclear PdI catalysis to be operative, which allows for operationally simple couplings with broad scope and full retention of stereochemistry.Entities:
Keywords: S-aryl phosphorothioate; arylation; axial chirality; computation; dinuclear catalysis
Year: 2019 PMID: 31190467 PMCID: PMC6771726 DOI: 10.1002/anie.201906063
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336
Scheme 1Motivation and synthetic strategy.
Figure 1Free energy profile of PdI‐catalyzed coupling of PhI with [SP(O)(OPh)2]−. Gibbs free energies (in kcal mol−1) shown, calculated at the SMD (toluene) M06L/def2TZVP//B3LYP‐D3/6‐31G(d, p) (SDD for Pd, I) level of theory.
Scope of the PdI‐catalyzed phosphorothioation of aryl iodides.[a]
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[a] Yields of isolated products 2–27 after chromatography. [b] The reaction mixture was stirred for 36 hours.
Applications of the coupling strategy to the efficient synthesis of axially chiral S‐aryl phosphorothioates.[a]
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[a] Yields of isolated products 28–39 after chromatography and the ee determined by HPLC analysis of the purified product on a chiral stationary phase.