| Literature DB >> 30821884 |
Peng-Fei Dai1, Xiao-Shan Ning1, Hua Wang1, Xian-Chao Cui1, Jie Liu1, Jian-Ping Qu2, Yan-Biao Kang1.
Abstract
Organic chemists now can construct carbon-carbon σ-bonds selectively and sequentially, whereas methods for the selective cleavage of carbon-carbon σ-bonds, especially for unreactive hydrocarbons, remain limited. Activation by ring strain, directing groups, or in the presence of a carbonyl or a cyano group is usually required. In this work, by using a sequential strategy site-selective cleavage and borylation of C(aryl)-CH3 bonds has been developed under directing group free and transition metal free conditions. Methyl groups of various arenes are selectively cleaved and replaced by boryl groups. Mechanistic analysis suggests that it proceeds by a sequential intermolecular oxidation and coupling of a transient aryl radical, generated by radical decarboxylation, involving a pyridine-stabilized persistent boryl radical.Entities:
Keywords: borylation; cross-coupling; oxidation; radicals; reaction mechanisms
Year: 2019 PMID: 30821884 DOI: 10.1002/anie.201901783
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336