| Literature DB >> 32820123 |
Ronald L Reyes1,2, Miyu Sato2, Tomohiro Iwai2, Kimichi Suzuki1,2, Satoshi Maeda1,2, Masaya Sawamura3,2.
Abstract
Site selectivity and stereocontrol remain major challenges in C-H bond functionalization chemistry, especially in linear aliphatic saturated hydrocarbon scaffolds. We report the highly enantioselective and site-selective catalytic borylation of remote C(sp3)-H bonds γ to the carbonyl group in aliphatic secondary and tertiary amides and esters. A chiral C-H activation catalyst was modularly assembled from an iridium center, a chiral monophosphite ligand, an achiral urea-pyridine receptor ligand, and pinacolatoboryl groups. Quantum chemical calculations support an enzyme-like structural cavity formed by the catalyst components, which bind the substrate through multiple noncovalent interactions. Versatile synthetic utility of the enantioenriched γ-borylcarboxylic acid derivatives was demonstrated.Entities:
Year: 2020 PMID: 32820123 DOI: 10.1126/science.abc8320
Source DB: PubMed Journal: Science ISSN: 0036-8075 Impact factor: 47.728