Oxidative Coupling with Zr(IV) Supported by a Noninnocent Anthracene-Based Ligand: Application to the Catalytic Cotrimerization of Alkynes and Nitriles to Pyrimidines.

J Am Chem Soc

Division of Chemistry and Chemical Engineering , California Institute of Technology, 1200 East California Boulevard MC 127-72 , Pasadena , California 91125 , United States.

Published: September 2018

We report the synthesis and reactivity of Zr complexes supported by a 9,10-anthracenediyl-linked bisphenoxide ligand, L. ZrLBn (1) undergoes facile photolytic reduction with concomitant formation of bibenzyl and ZrL(THF) (2), which displays a two-electron reduced anthracene moiety. Leveraging ligand-stored reducing equivalents, 2 promotes the oxidative coupling of internal and terminal alkynes to isolable zirconacyclopentadiene complexes, demonstrating the reversible utilization of anthracene as a redox reservoir. With diphenylacetylene under CO, cyclopentadienone is formed stoichiometrically. 2 is competent for the catalytic formation of pyrimidines from alkynes and nitriles. Mechanistic studies suggest that selectivity for pyrimidine originates from preferred formation of an azazirconacyclopentadiene intermediate, which reacts preferentially with nitriles over alkynes.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7282345PMC
http://dx.doi.org/10.1021/jacs.8b07418DOI Listing

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