| Literature DB >> 31807197 |
Ziping Cao1, Jiekun Zhu1, Li Liu1, Yuanling Pang1, Laijin Tian1,2, Xuejun Sun1, Xin Meng1.
Abstract
A formal [3 + 2] cycloaddition between ynamides and unprotected isoxazol-5-amines has been developed in the presence of catalytic AgNTf2 in an open flask. By the protocol, a variety of functionalized 5-amino-1H-pyrrole-3-carboxamide derivatives can be obtained in up to 99% yield. The reaction mechanism might involve the generation of an unusual α-imino silver carbene intermediate (or a silver-stabilized carbocation) and subsequent cyclization/isomerization to build the significant pyrrole-3-carboxamide motif. The reaction features the use of an inexpensive catalyst, simple reaction conditions, simple work-up without column chromatographic purification for most of products and high yields.Entities:
Keywords: [3 + 2] cycloaddition; isoxazole; pyrrole; silver catalysis; ynamide
Year: 2019 PMID: 31807197 PMCID: PMC6880818 DOI: 10.3762/bjoc.15.255
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Scheme 1Two modes of reactions of alkynes by silver catalysis.
Scheme 2Reactions of ynamides or ynol ethers with isoxazoles by transition metal catalysis.
Figure 1Selected bioactive molecules containing the 5-amino-1H-pyrrole-3-carboxamide motif.
Scheme 3Reactions of ynamide 4a with different isoxazoles 5, 7 and 8a.
Effect of different reaction conditions.a
| entry | Catalyst (5 mol %) | Solvent | Temp. (°C) | Time (h) | Yield (%)b |
| 1 | AgNTf2 | DCE | 80 | 2 | 99 |
| 2 | AgSbF6 | DCE | 80 | 4 | 42 |
| 3 | AgOTF | DCE | 80 | 4 | 28, 55c |
| 4 | AgNO3 | DCE | 80 | 4 | 0, 20c |
| 5 | AgBF4 | DCE | 80 | 4 | 0 |
| 6 | AgOTf | DCE | 80 | 4 | 0 |
| 7 | AgNTf2 | 1,4-dioxane | 80 | 2 | 99 |
| 8 | AgNTf2 | THF | 80 | 24 | 95 |
| 9 | AgNTf2 | toluene | 80 | 12 | 92 |
| 10 | AgNTf2 | CH3CN | 80 | 12 | 85, 10c |
| 11 | AgNTf2 | DCE | 60 | 4 | 98 |
| 12 | AgNTf2 | DCE | 40 | 8 | 50 |
| 13 | AgNTf2 | DCE | 20 | 24 | 0 |
| 14d | AgNTf2 | DCE | 80 | 2 | 99 |
| 15e | AgNTf2 | DCE | 80 | 2 | 99 |
| 16f | AgNTf2 | DCE | 80 | 2 | 96 |
| 17 | – | DCE | 80 | 24 | 0 |
aAll reactions were carried out with ynamide 4a (0.2 mmol), isoxazole 8a (0.4 mmol, 2 equiv) with the indicated catalyst (5 mol %) in solvent (2.0 mL), unless otherwise noted. bYield of isolated product 10aa. cYield of hydrolytic product 11. d1.5 equiv of 8a was used. e1.1 equiv of 8a was used. f1.0 equiv of 8a was used.
Figure 2Scope with regard to ynamide 4. All reactions were carried out with ynamide 4 (0.2 mmol), isoxazole 8 (0.22 mmol, 1.1 equiv) with AgNTf2 (5 mol %) in DCE (2.0 mL) at 80 °C, unless otherwise noted. Isolated yields are provided.
Figure 3Scope with regard to the 5-aminoisoxazole 8 (see Figure 2). aReaction conditions: 2.0 equiv of 8e, 100 °C.
Figure 4Molecular structure in the solid state of compound 10ad.
Scheme 4A gram-scale experiment.
Scheme 5Mechanistic hypotheses for Ag-catalyzed reaction of ynamide 4a with aminoisoxazole 8a.
Scheme 6Possible reaction routes of intermediate C.