4.6 Article

The Role of LiBr and ZnBr2 on the Cross-Coupling of Aryl Bromides with Bu2Zn or BuZnBr

Journal

CHEMISTRY-A EUROPEAN JOURNAL
Volume 25, Issue 69, Pages 15751-15754

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/chem.201903931

Keywords

catalyst poisoning; Negishi coupling; PEPPSI; salt effects

Funding

  1. NSERC Canada
  2. Eli Lilly Research Award Program (LRAP)

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The impact of LiBr and ZnBr2 salts on the Negishi coupling of alkylZnBr and dialkylzinc nucleophiles with both electron-rich and -poor aryl electrophiles has been examined. Focusing only on the more difficult coupling of deactivated (electron-rich) oxidative addition partners, LiBr promotes coupling with BuZnBr, but does not have such an effect with Bu2Zn. The presence of exogenous ZnBr2 shuts down the coupling of both BuZnBr and Bu2Zn, which has been shown before with alkyl electrophiles. Strikingly, the addition of LiBr to Bu2Zn reactions containing exogenous ZnBr2 now fully restores coupling to levels seen without any salt present. This suggests that there is a very important interaction between LiBr and ZnBr2. It is proposed that Lewis acid adducts are forming between ZnBr2 and the electron-rich Pd-0 centre and the bromide from LiBr forms inorganic zincates that prevent the catalyst from binding to ZnBr2. This idea has been supported by catalyst design as chlorinating the backbone of the NHC ring of Pd-PEPPSI-IPent to produce Pd-PEPPSI-IPent(Cl) catalyst now gives quantitative conversion, up from a ceiling of only 50 % with the former catalyst.

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