| Literature DB >> 32969106 |
Chun-Xiao Li1, Qian Ning1, Wenxuan Zhao1, Hou-Ji Cao1, Yi-Ping Wang1, Hong Yan1, Chang-Sheng Lu1, Yong Liang1.
Abstract
The convenient cross-coupling of sp2 or sp3 carbons with a specific boron vertex on carborane cage represents significant synthetic values and insurmountable challenges. In this work, we report an Rh-catalyzed reaction between o-carborane and N-acyl-glutarimides to construct various Bcage -C bonds. Under the optimized condition, the removable imine directing group (DG) leads to B(3)- or B(3,6)-C couplings, while the pyridyl DG leads to B(3,5)-Ar coupling. In particular, an unexpected rearrangement of amide reagent is observed in pyridyl directed B(4)-C(sp3 ) formation. This scalable protocol has many advantages, including easy access, the use of cheap and widely available coupling agents, no requirement of an external ligand, base or oxidant, high efficiency, and a broad substrate scope. Leveraging the RhI dimer and twisted amides, this method enables straightforward access to diversely substituted and therapeutically important carborane derivatives at boron site, and provides a highly valuable vista for carborane-based drug screening.Entities:
Keywords: B−H activation; C−N activation; carboranes; late stage; rhodium
Year: 2021 PMID: 32969106 DOI: 10.1002/chem.202003634
Source DB: PubMed Journal: Chemistry ISSN: 0947-6539 Impact factor: 5.236