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. 2002 Nov 13;124(45):13372-3.
doi: 10.1021/ja027891q.

C-C bond formation via C-H bond activation: catalytic arylation and alkenylation of alkane segments

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C-C bond formation via C-H bond activation: catalytic arylation and alkenylation of alkane segments

Bengü Sezen et al. J Am Chem Soc. .

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Abstract

A new system for catalytic arylation and alkenylation of alkane segments has been developed. The ortho-tert-butylaniline substrates and 2-pivaloylpyridine may be arylated and alkenylated at the tert-butyl group, while no functionalization occurred at more reactive C-H and other bonds. Arylation and alkenylation of these substrates are achieved in the presence of Ph2Si(OH)Me and Ph-CH=CH-Si(OH)Me2, respectively, and the catalytic amount of Pd(OAc)2 and stoichiometric oxidant (Cu(OAc)2, 2 equiv) in DMF. In contrast, the ortho-i-propylaniline substrate underwent cyclopalladation, but no arylation product was obtained. Complex compound 14 was synthesized via tandem arylation-alkenylation of tert-butylaniline 11. We hypothesize that the high selectivity of this system stems from the confluence of directing effect of the Schiff base or pyridine moiety and unique reactivity properties of a phenyl-palladium acetate species (Ph-Pd-OAc.Ln).

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  • Findings of misconduct in science.
    [No authors listed] [No authors listed] NIH Guide Grants Contracts (Bethesda). 2010 Dec 3:NOT-OD-11-024. NIH Guide Grants Contracts (Bethesda). 2010. PMID: 21140543 Free PMC article. No abstract available.
  • Findings of Misconduct in Science.
    [No authors listed] [No authors listed] Fed Regist. 2010 Nov 29;75(228):73084-73085. Fed Regist. 2010. PMID: 27737196 Free PMC article. No abstract available.

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