Chiral Bismuth-Rhodium Paddlewheel Complexes Empowered by London Dispersion: The C-H Functionalization Nexus

Angew Chem Int Ed Engl. 2022 Nov 7;61(45):e202212546. doi: 10.1002/anie.202212546. Epub 2022 Oct 11.

Abstract

Heterobimetallic [BiRh] tetracarboxylate catalysts endowed with 1,3-disilylated phenylglycine paddlewheels benefit from interligand London dispersion. They were originally designed for asymmetric cyclopropanation but are now shown to perform very well in asymmetric C-H functionalization reactions too. Because of the confined ligand sphere about the derived donor/acceptor carbenes, insertions into unhindered methyl groups are kinetically favored, although methylene units also react with excellent levels of asymmetric induction; even gaseous ethane is a suitable substrate. Moreover, many functional groups in both partners are tolerated. The resulting products are synthetically equivalent to the outcome of traditional asymmetric ester alkylation, allylation, benzylation, propargylation and aldol reactions and therefore constitute a valuable nexus to more conventional chemical logic.

Keywords: Asymmetric Catalysis; C−H Functionalization; Heterobimetallic Complexes; London Dispersion; Rhodium Carbenes.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Bismuth
  • Catalysis
  • London
  • Rhodium* / chemistry
  • Stereoisomerism

Substances

  • Rhodium
  • Bismuth
  • carbene