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Structural and rate studies of the formation of substituted benzynes

  • Jason C. Riggsa(Author)
    ,
  • Antonio Ramireza(Author)
    ,
  • ,
  • Crystal G. Bashoreb(Author)
    ,
  • John Candlerb(Author)
    ,
  • Michael C. Wirtzb(Author)
  • aCornell University
    ,
  • bPfizer Global Research and Development
Research Output: Contribution to journal Article Peer-review

Abstract

The key elimination step for the formation of 3-substituted and 3,6-disubstituted benzynes from 2-haloaryllithiums displays a pronounced solvent-dependent regioselectivity. All 2-haloaryllithiums with electron withdrawing groups in the 6 position are shown by 6Li and 13C NMR spectroscopic studies to be monomers in THF. DFT computational studies implicate trisolvates. Rate studies reveal that LiF eliminates via monomer-based pathways requiring THF dissociation whereas LiCl eliminates via nondissociative pathways. Elimination to form 3-chloro- and 3-fluorobenzyne from 2-chloro-6-fluorophenyllithium displays a pronounced solvent-dependent regioselectivity that is traced to competing solvent-dissociative and nondissociative dissociative pathways for the elimination of LiCl and LiF, respectively.