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Stereoselective PCO/POC-Rearrangement of P-C-Cage Phosphorane in the Reaction of 4,5-Dimethyl-2-(2-oxo-1,2-diphenyl)ethoxy-1,3,2-dioxaphospholane with Hexafluoroacetone. | LitMetric

AI Article Synopsis

  • Researchers synthesized a unique phosphorane compound by reacting a modified phospholane with hexafluoroacetone, producing regio- and stereoisomers with over 95% stereoselectivity.
  • After a month of storage, one of the isomers (PCO) transformed into a more stable form (POC), which underwent mild hydrolysis to yield dioxaphospholane derivatives.
  • The study also revealed that acidic hydrolysis of the POC-isomer produced an oxirane derivative with high stereoselectivity, and DFT calculations helped analyze the structures and energies involved in the reactions.

Article Abstract

Interaction of 4,5-dimethyl-2-(2-oxo-1,2-diphenyl)ethoxy-1,3,2-dioxaphospholane, bearing a carboxyl group in the γ-position with respect to the phosphorus atom and obtained from d,l-butanediol, with hexafluoroacetone (CCl4, -40 °C) leads to the simultaneous formation of regio- and stereoisomeric cage-like phosphoranes with phosphorus-carbon and phosphorus-oxygen bonds with a high stereoselectivity (>95%), whose structure was determined by 1D and 2D NMR spectroscopy and XRD. When stored as a solution in dichloromethane for one month, the PCO-isomer rearranges into the thermodynamically more stable POC-isomer of the cage-like phosphorane. Mild hydrolysis of the PCO/POC-isomers proceeds with a high chemoselectivity and leads to the formation of P(IV)-dioxaphospholane derivatives. Acidic hydrolysis of the POC-isomer leads to the formation of an oxirane derivative with an unexpectedly high stereoselectivity (>95%). DFT calculations (using the PBE functional) allowed us to obtain structures and energies of the initial phospholane, reaction products (PCO/POC-isomers), and an intermediate P(V)-oxaphosphirane.

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Source
http://dx.doi.org/10.1021/acs.joc.6b00356DOI Listing

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