| Literature DB >> 24062834 |
Jungho Jun1, Hyu-Suk Yeom, Jun-Hyun An, Seunghoon Shin.
Abstract
Gold-catalyzed intermolecular couplings of sulfonylacetylenes with allyl ethers are reported. A cooperative polarization of alkynes both by a gold catalyst and a sulfonyl substituent resulted in an efficient intermolecular tandem carboalkoxylation. Reactions of linear allyl ethers are consistent with the [3,3]-sigmatropic rearrangement mechanism, while those of branched allyl ethers provided [3,3]- and [1,3]-rearrangement products through the formation of a tight ion-dipole pair.Entities:
Keywords: [1,3]-rearrangement; [3,3]-sigmatropic rearrangement; gold catalysis; intermolecular coupling; sulfonylacetylene
Year: 2013 PMID: 24062834 PMCID: PMC3778381 DOI: 10.3762/bjoc.9.198
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Figure 1Donor- and acceptor-substituted alkynes for Au-catalyzed intermolecular reactions.
Optimization of the reaction conditions.a
| Entry | Ligand | AgX | Solvent | Yieldb | |
| 1 | JohnPhos | AgSbF6 | 1:1.2 | CHCl3 | 32 |
| 2 | JohnPhos | AgSbF6 | 1:1.2 | DCM | 30 |
| 3 | JohnPhos | AgSbF6 | 1:1.2 | DCE | 23 |
| 4 | JohnPhos | AgSbF6 | 1:1.2 | CH3NO2 | 20 |
| 5 | JohnPhos | AgSbF6 | 1:1.2 | CH3CN | 0 |
| 6 | JohnPhos | AgSbF6 | 1:1.2 | THF | 0 |
| 7 | JohnPhos | AgSbF6 | 1:1.2 | PhH | 3 |
| 8 | P(OC6H5)3 | AgSbF6 | 1:1.2 | CHCl3 | 36 |
| 9 | PPh3 | AgSbF6 | 1:1.2 | CHCl3 | 48 |
| 10 | IMesc | AgSbF6 | 1:1.2 | CHCl3 | 22 |
| 11 | IPrd | AgSbF6 | 1:1.2 | CHCl3 | 19 |
| 12 | P(C6F5)3 | AgSbF6 | 1:1.2 | CHCl3 | 10 |
| 13 | PtBu3 | AgSbF6 | 1:1.2 | CHCl3 | 7 |
| 14 | PPh3 | AgSbF6 | 1:1 | CHCl3 | 40 |
| 15 | PPh3 | AgSbF6 | 1:2 | CHCl3 | 68 |
| 16 | PPh3 | AgSbF6 | 1:3 | CHCl3 | 77 |
| 17 | PPh3 | AgSbF6 | 1:5 | CHCl3 | 74 |
| 18 | PPh3 | AgSbF6 | 5:1 | CHCl3 | 53 |
| 19 | PPh3 | AgOTf | 1:3 | CHCl3 | 48 |
| 20 | PPh3 | AgNTf2 | 1:3 | CHCl3 | 44 |
| 21 | PPh3 | AgBF4 | 1:3 | CHCl3 | 22 |
| 22 | –e | AgSbF6 | 1:3 | CHCl3 | 0 |
aConditions: in situ formed catalyst from Au(L)Cl and AgX (5 mol % each); rt, 1 h. bCrude yield based on the internal reference (N,N-dimethylacetamide). cIMes = 1,3-dimesitylimidazol-2-ylidene. dIPr = 1,3-bis(2,6-diisopropylphenyl)imidazol-2-ylidene. eIn the absence of Au(L)Cl.
Scope of the carboalkoxylation of sulfonyl acetylene (1).a
| Entry | R1 | R2 | R3 | R4 | Product | Yieldb (%) | [3,3]/[1,3] |
| 1 | Me | H | H | 53 | 9:1 | ||
| 2 | IPr | H | H | 67 | 10:1 | ||
| 3 | (CH2)2Ph | H | H | 72 | 8:1 | ||
| 4 | (CH2)2Ph | Cy | H | H | 54 | 4:1 | |
| 5c | (CH2)2Ph | (CH2)2Ph | H | H | 75 | 13:1 | |
| 6 | (CH2)2Ph | Me | H | H | 75 | 14:1 | |
| 7c | (CH2)2Ph | H | H | H | 74 | – | |
| 8 | Allyl | H | H | 60 | 8:1 | ||
| 9c | Me | Me | H | 40 | 1:1.7d | ||
| 10 | (CH2)2Ph | (CH2)3 | H | 23 | –e | ||
| 11 | nC8H17 | Me | H | 31 | 1:1.4f | ||
| 12 | nC8H17 | H | Me | H | 34 | >20:1g | |
| 13 | (CH2)2Ph | Me | Me | H | 18 | – | |
| 14 | (CH2)2Ph | H | H | Me | 23 | – | |
aConditions: Allyl ether (3.0 equiv) and 1 (1 equiv) in the presence of in situ formed [Au(PPh3)]SbF6 (5 mol %) in CHCl3 from −15 °C to rt, 2.5 h. bIsolated yield after chromatography. cCharacterization data have been previously provided ([9]). d15% of 4 (R1 = Me) was observed for the reaction of 3i. e10% of 4 and 43% of 5 (R1 = (CH2)2Ph) was observed for the reaction of 3j. f20% of 4 (R1 = n-C8H17) was observed for the reaction of 3k. g3% of 4 (R1 = n-C8H17) was observed for the reaction of 3i.
Scheme 1Proposed mechanism of the [3,3]- and [1,3]-rearrangement.
Scheme 2Experiments to investigate the reaction mechanism.