| Literature DB >> 31489165 |
Uttam Dutta1,2,3, Sudip Maiti1, Sandeep Pimparkar1,2,3, Siddhartha Maiti1, Lawrence R Gahan4, Elizabeth H Krenske4, David W Lupton2,3, Debabrata Maiti1,2.
Abstract
Rhodium catalysis has been extensively used for ortho-C-H functionalization reactions, and successfully extended to meta-C-H functionalization. Its application to para-C-H activation remains an unmet challenge. Herein we disclose the first example of such a reaction, with the Rh-catalyzed para-C-H olefination of arenes. The use of a Si-linked cyanobiphenyl unit as a traceless directing group leads to highly para-selective arene-olefin couplings.Entities:
Year: 2019 PMID: 31489165 PMCID: PMC6713868 DOI: 10.1039/c9sc01824g
Source DB: PubMed Journal: Chem Sci ISSN: 2041-6520 Impact factor: 9.825
Scheme 1Rh-catalyzed para-C–H olefination.
Scheme 2Evaluation of directing groups.11
Scope of olefin coupling partners 11
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Ratio of para: others determined by the 1H NMR of crude reaction mixture.
Scope of monosubstituted toluene derivatives 11
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Ratio of para: others determined by the 1H NMR of crude reaction mixture.
Scope of disubstituted toluene derivatives in Rh-catalyzed para-C–H olefination 11
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Ratio of para: others determined by the 1H NMR of crude reaction mixture.
Scope of α-substituted toluene derivatives and more complex olefin coupling partners 11
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Ratio of para: others determined by the 1H NMR of crude reaction mixture.
Scheme 3Removal of the directing group and diversification of the para-olefinated products.11
Scheme 4Experiments with a deuterium-labeled substrate.11
Scheme 5Possible catalytic cycle for para-selective Rh-catalyzed olefination.
Fig. 1Transition states for Rh(iii)-mediated para-C–H and meta-C–H bond activation, computed with M06/6-311+G(d,p)-SDD//M06/6-31G(d,p)-LANL2DZ in SMD dichloroethane. Distances in Å, ΔG‡rel in kcal mol–1.