| Literature DB >> 29896964 |
Mong-Feng Chiou1, Jayachandran Jayakumar2, Chien-Hong Cheng2, Shih-Ching Chuang1.
Abstract
Reaction mechanisms for the synthesis of indenamines, indenols, and isoquinolinium salts through cobalt- and rhodium-catalysis were investigated using density functional theory calculations. We found that the valence charge of transition metals dramatically influences the reaction pathways. Catalytic reactions involving lower-oxidation-state transition metals (MI/MIII, M = Co and Rh) generally favor a [3 + 2] cyclization pathway, whereas those involving higher oxidation states (MIII/MV) proceed through a [4 + 2] cyclization pathway. A catalytic cycle with novel MIII/MV as a crucial species was successfully revealed for isoquinolinium salts synthesis, in which highly valent MV was encountered not only in the [RhCp*]-catalysis but also in the [CoCp*]-catalysis.Entities:
Year: 2018 PMID: 29896964 DOI: 10.1021/acs.joc.8b00711
Source DB: PubMed Journal: J Org Chem ISSN: 0022-3263 Impact factor: 4.354