| Literature DB >> 32897713 |
Łukasz Woźniak1, Jin-Fay Tan1, Qui-Hien Nguyen1, Adrien Madron du Vigné1, Vitalii Smal1, Yi-Xuan Cao1, Nicolai Cramer1.
Abstract
The development of catalytic enantioselective transformations, enabling the construction of complex molecular scaffolds from simple precursors, has been a long-standing challenge in organic synthesis. Recent achievements in transition-metal catalyzed enantioselective functionalizations of carbon-hydrogen (C-H) bonds represent a promising pathway toward this goal. Over the last two decades, iridium catalysis has evolved as a valuable tool enabling the stereocontrolled synthesis of chiral molecules via C-H activation. The development of iridium-based systems with various chiral ligand classes, as well as studies of their reaction mechanisms, has resulted in dynamic progress in this area. This review aims to present a comprehensive picture of the enantioselective functionalizations of C-H bonds by chiral iridium complexes with emphasis on the mechanisms of the C-H activation step.Entities:
Year: 2020 PMID: 32897713 DOI: 10.1021/acs.chemrev.0c00559
Source DB: PubMed Journal: Chem Rev ISSN: 0009-2665 Impact factor: 60.622