4.7 Article

Facile Hydrogenolysis of C(sp3)-C(sp3) σ Bonds

Journal

ADVANCED SYNTHESIS & CATALYSIS
Volume 358, Issue 21, Pages 3422-3434

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/adsc.201600535

Keywords

diarylmethane; hydrogenolysis; Meldrum's acid; quaternary centers; reductive dealkylation

Funding

  1. Natural Sciences and Engineering Research Council of Canada (NSERC)
  2. Government of Ontario
  3. Canadian Foundation for Innovation Trust
  4. University of Waterloo
  5. NSERC CGS-M
  6. CGS-D
  7. NSERC

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The modification of benzylic quaternary, tertiary, and secondary carbon centers through palladium-catalyzed hydrogenolysis of C(sp(3))-C(sp(3)) sigma bonds is presented. When benzyl Meldrum's acid derivatives bearing quaternary benzylic centers are treated under mild hydrogenolysis conditions - palladium on carbon and atmospheric pressure of hydrogen - aromatics substituted with tertiary benzylic centers and Meldrum's acid are obtained with good to excellent yield. Analogously, substrates containing tertiary or secondary benzylic centers yield aromatics substituted with secondary benzylic centers or toluene derivatives, respectively. Furthermore, this strategy is used for the high yielding synthesis of diarylmethanes. The scope of the reductive dealkylation reaction is explored and the limitations with respect to steric and electronic factors are determined. A mechanistic analysis of the reaction is described that consisted of deuterium labelling experiments and hydrogenolysis of enantioenriched derivatives. The investigation shows that the C(sp(3))-C(sp(3)) sigma bond-cleaving events occur through a hybrid S(N)1/S(N)2 mechanism, in which the palladium center displaces a carbon-based leaving group, namely Meldrum's acid, with inversion of configuration, followed by reductive elimination of palladium to furnish a C H bond.

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