| Literature DB >> 29129930 |
Kaname Shibata1, Satoko Natsui1, Mamoru Tobisu1, Yoshiya Fukumoto1, Naoto Chatani2.
Abstract
Hydroarylation is an environmentally attractive strategy which incorporates all of the atoms contained in the substrates into the desired products. Almost all the hydroarylations of norbornene reported to date involve an exo-selective reaction. Here we show the endo-selective hydroarylation ofEntities:
Year: 2017 PMID: 29129930 PMCID: PMC5682280 DOI: 10.1038/s41467-017-01531-2
Source DB: PubMed Journal: Nat Commun ISSN: 2041-1723 Impact factor: 14.919
Fig. 1Conventional key steps in catalytic addition reactions to norbornene. Irrespective of the mechanism, the addition reactions of X–Y species to norbornene proceed in an exo-manner
Fig. 2Endo-selective hydroarylation of C–H bonds with norbornene. There are many examples of the exo-selective hydroarylation of C–H bonds with norbornene, but none of an endo-selective hydroarylation. An acetate ligand on the rhodium catalyst has a significant effect on the efficiency of the reaction
Fig. 3Endo-selective hydroarylation of C–H bonds with norbornene. The use of bulky carboxylic acids as additives dramatically improved the endo-selectivity of the reaction
Fig. 4Substrate and alkene scope. aThe reaction was carried out in the absence of pivalic acid. bThe reaction was carried out for 24 h with catalyst (5.0 mol%). cThe reaction was carried out for 24 h. d2,6-dimethylbenzoic acid was used in place of pivalic acid. eThe reaction was carried out with pivalic acid (1 equiv) in toluene (1 mL). fThe reaction was carried out at 120 °C. gIsolated by GPC. hThe ratio could not be determined
Fig. 5Deuterium-labeling experiments. a–c A significant amount of H/D exchange occurred in the recovered amide, and both the ortho-carbon and the ortho-H of aromatic amides were attached to the 2-position of the norbornane ring in the product. d However, in sharp contrast to 1a, no deuterium incorporation was observed at the 2-position in the norbornane ring in the hydroarylation product obtained from 1r. e One of the deuterium atoms migrates to the adjacent carbon
Fig. 6Proposed reaction mechanism. The generation of the rhodium carbene complex C and a hydride migration from the exo-face (D → E) are key steps