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Diastereoselective Synthesis of P-Stereogenic Secondary Phosphine Oxides (SPOs) Bearing a Chiral Substituent by Ring Opening of (+)-Limonene Oxide with Primary Phosphido Nucleophiles.

Amber N ZimmermanRebecca S XuSamantha C ReynoldsChase A ShippDerrick J MarshallGe WangNatalia F BlankSarah K GibbonsRussell P HughesDavid S GlueckGary J BalaichArnold L Rheingold
Published in: The Journal of organic chemistry (2020)
Kinetic separation of the commercially available cis/trans-(+)-limonene oxide mixture by ring opening with primary phosphido nucleophiles LiPHR (R = ferrocenyl, Ph, Cy, t-Bu, Mes* (Mes* = 2,4,6-(t-Bu)3C6H2)), followed by treatment with aqueous NH4Cl and H2O2, gave unreacted cis-(+)-limonene oxide and diastereoenriched mixtures of the secondary phosphine oxides (SPOs) PHR(trans-(+)-Lim-OH)(O), which could be separated by chromatography and/or recrystallization. This one-pot synthesis uses a cheap chiral material and commercially available primary phosphines to control the configuration of the new P-stereogenic SPOs, which are potentially useful as ligands for metal complexes in asymmetric catalysis.
Keyphrases
  • ionic liquid
  • mass spectrometry
  • liquid chromatography
  • room temperature
  • capillary electrophoresis
  • high speed
  • simultaneous determination
  • oxide nanoparticles