| Literature DB >> 21915193 |
Hideto Ito1, Tomoya Harada, Hirohisa Ohmiya, Masaya Sawamura.
Abstract
The gold-catalyzed, seven-membered ring forming, intramolecular hydroamination of alkynic sulfonamides has been investigated. The protocol, with a semihollow-shapedEntities:
Keywords: azepine; cyclization; gold catalyst; hydroamination; triethynylphosphine
Year: 2011 PMID: 21915193 PMCID: PMC3167492 DOI: 10.3762/bjoc.7.106
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Figure 1Azepine frameworks found in natural products and pharmaceuticals.
Figure 2Semihollow-shaped triethynylphosphine L1.
Optimization of reaction conditions for the gold-catalyzed intramolecular hydroamination of 4a.
| entry | Au cat. (mol %) | solvent (mL) | temp. (°C) | time (h) | convn. (%)a | yield orf |
| 1 | [Au(NTf2)( | CH2Cl2 (1.0) | 25 | 18 | 100 | 90 (82) |
| 2 | [Au(NTf2)( | CH2Cl2 (4.0) | 25 | 18 | 87 | 85 |
| 3 | [Au(NTf2)( | DCE (1.0) | 80 | 9 | 100 | 83 (79) |
| 4 | [Au(NTf2)( | toluene (1.0) | 25 | 18 | 98 | 97 |
| 5 | [Au(NTf2)( | THF (1.0) | 25 | 18 | 29 | 24 |
| 6 | [Au(NTf2)( | MeCN (1.0) | 25 | 18 | 0 | n. d. |
| 7 | [Au(OTf)( | CH2Cl2 (1.0) | 25 | 18 | 100 | 90 (80) |
| 8 | [Au(SbF6)( | CH2Cl2 (1.0) | 25 | 18 | 14 | n. d. |
| 9 | [Au(BF4)( | CH2Cl2 (1.0) | 25 | 18 | 7 | n. d. |
| 10 | [Au(NTf2)(PPh3)] (0.5) | CH2Cl2 (1.0) | 25 | 24 | 29 | 22 (26) |
| 11 | [Au(NTf2)(PPh3)] (5.0) | CH2Cl2 (1.0) | 25 | 18 | 100 | 66 (64) |
| 12 | [Au(NTf2){P(OPh)3}] (0.5) | CH2Cl2 (1.0) | 25 | 18 | 54 | 39 |
| 13 | [Au(NTf2)(X-Phos)] (0.5) | CH2Cl2 (1.0) | 25 | 18 | 41 | 41 |
| 14 | [Au(NTf2)(IPr)] (0.5) | CH2Cl2 (1.0) | 25 | 18 | 53 | 41 |
aDetermined by 1H NMR. bIsolated yield in parentheses.
Figure 3Time–conversion profiles for the gold-catalyzed cyclization of 4a with L1, X-Phos and IPr ligands.
Effect of N-substitutents.
| entry | R | Au cat. (mol %) | solvent | temp. (°C) | time (h) | convn. (%)a | yield of |
| 1 | Ns ( | 0.5 | CH2Cl2 | 25 | 18 | 0 | n. d. |
| 2 | Ns ( | 2.5 | DCE | 80 | 18 | 100 | 76b |
| 3 | Cbz ( | 2.5 | DCE | 80 | 24 | 97 | 33 |
| 4 | Ac ( | 2.5 | DCE | 80 | 24 | 63 | 18 |
| 5 | Boc ( | 2.5 | DCE | 80 | 24 | 17 | n. d. |
| 6 | PMB ( | 2.5 | DCE | 80 | 24 | 0 | n. d. |
aDetermined by 1H NMR. bIsolated yield.
Cyclization of alkynic sulfonamides with an acyclic linker.a
| entry | substrate | Au cat. (mol %) | time (h) | convn. (%)b | product | yield (%)c |
| 1 | R = Me ( | 2.5 | 8 | 100 | R = Me ( | 99 |
| 2 | R = iPr ( | 5.0 | 12 | 100 | R = iPr ( | 88 |
| 3 | R = Bn ( | 5.0 | 12 | 100 | R = Bn ( | 71 |
| 4 | R = Me ( | 5.0 | 4 | 100 | R = Me ( | 77 |
| 5 | R = Ph ( | 5.0 | 4 | 100 | R = Ph ( | 69d |
| 6 | R = –(CH2)5– ( | 5.0 | 12 | 100 | R = –(CH2)5– ( | 66 |
aReaction conditions: 4, 0.1 mmol; [Au(NTf2)(L1)], 2.5 or 5 mol %; DCE, 1.0 mL; 80 °C.
bDetermined by 1H NMR.
cIsolated yield.
dMixture of 5k and 6k in 92:8 ratio.
Cyclization of alkynic sulfonamide with a ring-fused linker.a
| entry | substrate | Au cat. (mol %) | time (h) | convn. (%)b | product | yield (%)c |
| 1 | [Au(NTf2)( | 3 | 100 | 86 | ||
| 2 | [Au(NTf2)(IPr)] (2.5) | 6 | 100 | 58 | ||
| 3 | [Au(NTf2)( | 3 | 100 | 97 | ||
| 4 | [Au(NTf2)( | 17 | 100 | 76d | ||
aReaction conditions: 4, 0.1 mmol; DCE, 1.0 mL; 80 °C.
bDetermined by 1H NMR.
cIsolated yield.
dMixture of 5o and 6o in 98:2 ratio.
6-exo-dig cyclization of sulfonamide 7.
| entry | Ligand | time | convn. | yield of |
| 1 | 2 | 100 | 100 (91) | |
| 2 | X-Phos | 12 | 76 | 76 (70) |
| 3 | IPr | 12 | 68 | 67 (58) |
aDetermined by 1H NMR. bIsolated yield in the parentheses.
Scheme 18-exo-dig cyclization of sulfonamide 9.
Scheme 2Isomerization experiments of 6a.
Figure 4Possible pathway for the gold-catalyzed conversion of 4a into 5a.