4.8 Article

A General, Multimetallic Cross-Ullmann Biheteroaryl Synthesis from Heteroaryl Halides and Heteroaryl Triflates

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JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
卷 143, 期 51, 页码 21484-21491

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AMER CHEMICAL SOC
DOI: 10.1021/jacs.1c10907

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  1. NIH [R01GM097243, 1S10 OD020022-1]
  2. NSF [CHE-1048642]

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A new, general approach to biheteroaryls through Ni- and Pd-catalyzed multimetallic cross-Ullmann coupling has been developed, demonstrating successful synthesis of a variety of heteroaryl halides and triflates. This method showed high generality and >90% hit rate in a 96-well plate format.
Despite their importance to medicine and materials science, the synthesis of biheteroaryls by cross-coupling remains challenging. We describe here a new, general approach to biheteroaryls: the Ni- and Pd-catalyzed multimetallic cross-Ullmann coupling of heteroaryl halides with triflates. An array of 5-membered, 6-membered, and fused heteroaryl bromides and chlorides, as well as aryl triflates derived from heterocyclic phenols, proved to be viable substrates in this reaction (62 examples, 63 +/- 17% average yield). The generality of this approach to biheteroaryls was further demonstrated in 96-well plate format at 10 mu mol scale. An array of 96 possible products provided >90% hit rate under a single set of conditions. Further, low-yielding combinations could be rapidly optimized with a single Toolbox Plate of ligands, additives, and reductants.

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