| Literature DB >> 25198147 |
Roohollah Kazem Shiroodi1, Olesja Koleda, Vladimir Gevorgyan.
Abstract
A regioselective transition metal-catalyzed cycloisomerization reaction of boron-containing alkynyl epoxides toward C2- and C3-borylated furans has been developed. It was found that the copper catalyst as well as the gold catalyst with more basic triflate counterion favor boryl migration toward C3-borylated furans, whereas employment of the cationic gold hexafluoroantimonate affords C2-borylated furan via a formal 1,2-hydrogen shift.Entities:
Mesh:
Substances:
Year: 2014 PMID: 25198147 PMCID: PMC4183646 DOI: 10.1021/ja507054j
Source DB: PubMed Journal: J Am Chem Soc ISSN: 0002-7863 Impact factor: 15.419
Scheme 1Regiodivergent Synthesis of Furans and Pyrroles via Cycloisomerization of Alkynyl Epoxides and Aziridines
Scheme 2Metal-Catalyzed 1,2-Boryl Migration in the Synthesis of 3-Borylated Furans
MIDA = N-methyliminodiacetic acid; PIDA = pinene-derived iminodiacetic acid; BF3OEt2 (1.0 equiv), DCM, −30 °C.; [CuOTf]2·PhH (5 mol %), DCE, 30 °C.
Copper-Catalyzed Migratory Cycloisomerization Reaction toward Borylated Furans
| entry | substrate | R1, R2 | yield, % |
|---|---|---|---|
| 1 | 80 (97:3:0) | ||
| 2 | Ph, H | 36 (89:11:0) | |
| 3 | 2-OMe-Ph, H | 51 (99:1:0) | |
| 4 | 2-CF3-Ph, H | 96 (0:0:100) | |
| 5 | 0 |
Isolated yields.
NMR ratios.
T = 55 °C.
Heating of the reaction did not lead to furan.
Decomposition of 4.
Optimization of the Catalyst
| entry | catalyst | NMR yield, % | |
|---|---|---|---|
| 1 | Ph3PAuCl/AgSbF6 | >99 | 50:50 |
| 2 | Ph3PAuCl/AgOTf | 85 | 82:18 |
| 4 | (ArO)3PAuCl | 76 | 22:78 |
| 5 | IPrAuCl/AgOTf | 79 | 33:67 |
| 7 | AgOTf | 39 | 87:13 |
| 8 | AgSbF6 | 39 | 86:14 |
Ar = 2,4-di-tBuPh.
Solution [0.04M].
T = −30 °C.
76% NMR yield at rt.
Ratio of 91:9 at rt.
Gold-Catalyzed Synthesis of C3-Borylated Furans
Isolated yield.
Reaction was performed at rt.
Gold-Catalyzed Synthesis of C2-Borylated Furans
Isolated yields.
Exclusive formation of C2-borylated furans was observed in all examples.
Substantial decomposition of substrate was observed.
At 60 °C.
THF as the solvent.
NMR yield.
Scheme 3Mechanistc Studies of the Gold-Catalyzed Cycloisomerization Reactions
Scheme 4Mechanistic Proposal for the Regidivergent Gold-Catalyzed Cycloisomerizations