| Literature DB >> 32015818 |
Dino Berthold1, Johannes Klett1, Bernhard Breit1.
Abstract
A rhodium-catalyzed regio- and enantioselective cyclization of tethered allenylbenzenes is reported. Employing a RhI/Josiphos catalytic system a diverse set of 6-membered, α-chiral benzocycles were obtained, scaffolds found in many bioactive compounds. Moreover, a gram scale reaction as well as the application of suitable transformations are demonstrated. This journal is © The Royal Society of Chemistry 2019.Entities:
Year: 2019 PMID: 32015818 PMCID: PMC6977554 DOI: 10.1039/c9sc03894a
Source DB: PubMed Journal: Chem Sci ISSN: 2041-6520 Impact factor: 9.825
Fig. 1Natural products and bioactive compounds possessing an α-chiral benzocyclic scaffold.
Scheme 1Strategies for the synthesis of allylic benzocycles.
Rhodium-catalyzed intramolecular, enantioselective cyclization of allenylbenzenes
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| |||||
| Entry | Ligand | Additive | Solvent | Yield | ee |
| 1 | dppf ( | TFA | DCE | 92% |
|
| 2 | dppf ( | — | DCE | — | — |
| 3 |
| TFA | DCE | 70% | 54% |
| 4 |
| PPTS | DCE | 73% | 90% |
| 5 |
|
| DCE | 80% | 66% |
| 6 |
| PPTS | DCE | 72% | –90% |
Reactions were performed in 0.4 mmol scales.
Yield of isolated product.
The ee was determined by HPLC analysis using a chiral stationary phase.
dppf = 1,1′-bisdiphenylphosphinoferrocene.
J003-1 = enantiomer of Josiphos ligand J003-2.
Scheme 2Scope of intramolecular addition of arenes to allenes. Reactions were performed in 0.4 mmol scales. J003-1 was used instead of J003-2.
Scheme 3Gram-scale catalysis.
Scheme 4Various functionalizations of allylated benzocycle 2a. Reagents and conditions: (a) 9-BBN (1.05 eq.), THF (0.5 M), 0 °C – rt, 6 h; then H2O2 (30%, 3.00 eq.), NaOH (2.0 M, 3.00 eq.), 1 h, 91%, 90% ee; (b) [Rh(CO)2acac] (0.50 mol%), 6-DPPon (5.0 mol%), CO/H2 (1 : 1, 20 bar), toluene (0.13 M), 80 °C, 16 h, 70%, linear/branched >95 : 5, 89% ee; (c) Hoveyda–Grubbs II (10 mol%), trans-stilbene (10 eq.), DCE (0.2 M), 80 °C, 18 h, 95%, 91% ee; (d) Pd/C (10 wt%, 10 mol%), MeOH (0.1 M), rt, 18 h, 91%, 89% ee; (e) methyl vinyl ketone (1.3 eq.), BF3·Et2O (30 mol%), CH2Cl2 (0.2 M), 0 °C – rt, 18 h, 67%, 88% ee (6-DPPon = 6-diphenylphosphinopyridin-2-(1H)-one).
Scheme 5Proposed reaction mechanism.