| Literature DB >> 24419139 |
Eito Yoshioka1, Shigeru Kohtani1, Hideto Miyabe2.
Abstract
The domino three-component coupling reaction of arynes with DMF and active methylenes or methines was studied as a highly efficient method for preparing heterocycles. Coumarin derivative 5 was formed when diethyl malonate (2) or α-bromomalonate (3) were used as a C2-unit. In contrast, dihydrobenzofurans 7a and 7b were obtained by using α-chloroenolates generated from α-chloromalonates 4a and 4b and Et2Zn. The benzofuran 15a could be obtained by using ethyl iodoacetate (14) as a C1-unit. The one-pot conversion of dihydrobenzofurans 7a, 7b and 8a into benzofurans 15a and 15b was also studied. The direct synthesis of benzofuran 15b was achieved by using the active methine 18 having ketone and ester groups.Entities:
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Year: 2014 PMID: 24419139 PMCID: PMC6271845 DOI: 10.3390/molecules19010863
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Scheme 1Three-component coupling reaction.
Scheme 2Substrates for trapping the intermediate C.
Reaction of aryne precursor 1 with DMF and 2 a.
| Entry | Reagent (3.0 equiv) | Product (% yield) b |
|---|---|---|
| 1 | CsF | 5 (65), 6 (trace) |
| 2 | TBAF | 5 (86) |
| 3 | KF | NR c |
a Reactions were carried out with 1 (1.0 equiv), 2 (1.5 equiv), and reagent (3.0 equiv) in DMF (0.1 M solution of 1). b Isolated yield. c No reaction; Triflate 1 was recovered in 93% yield.
Scheme 3Reaction pathway.
Reaction of aryne precursor 1 with DMF and 3 a.
| Entry | Reagent | Additive | Product (% yield) b |
|---|---|---|---|
| 1 | CsF | Et2Zn | |
| 2 | TBAF | Et2Zn | |
| 3 | KF | Et2Zn | NR d |
| 4 | CsF | Me3Al | |
| 5 | TBAF | Me3Al |
a Reactions were carried out with 1 (1.0 equiv), 3 (1.5 equiv), reagent (5.0 equiv), and additive (2.0 equiv) in DMF (0.1 M solution of 1). b Isolated yield. c Triflate 1 was recovered in 64% yield. d No reaction; Triflate 1 was recovered in 98% yield. e Triflate 1 was recovered in 12% yield.
Reaction of aryne precursor 1 with DMF and 4a,b.
| Entry | Methine | Reagent | Product (% yield) a | |
|---|---|---|---|---|
| 1 b | 4a | TBAF | rt | |
| 2 b | 4a | TBAF | −40 °C to rt | |
| 3 b | 4a | CsF | −40 °C to rt | |
| 4 c | 4a | CsF | −40 °C to rt | |
| 5 b | 4a | KF | rt | NR d |
| 6 b | 4b | CsF | −40 °C to rt | |
| 7 c | 4b | CsF | −40 °C to rt |
a Isolated yield. b Reactions were carried out with 1 (1.0 equiv), 4a,b (2.0 equiv), reagent (5.0 equiv), and Et2Zn (2.0 equiv) in DMF (0.1 M solution of 1). c Reactions were carried out with 1 (1.2 equiv), 4a,b (1.0 equiv), CsF (6.0 equiv), and Et2Zn (1.0 equiv) in DMF (0.1 M solution of 1). d No reaction; Triflate 1 was recovered in 95% yield.
Scheme 4Generation of enolates and reaction pathway.
Scheme 5Reaction of 1 with 4a.
Scheme 6Reaction of 10 with DMF and 4a.
Reaction of aryne precursor 1 with DMF and 14 a.
| Entry | Reagent (equiv) | Ethyl iodoacetate | Time (h) | Product (% yield) b | |
|---|---|---|---|---|---|
| 1 | TBAF (3.0) | 1.5 equiv | rt | 12 | |
| 2 | CsF (3.0) | 1.5 equiv | rt | 12 | |
| 3 | CsF (5.0) | 2.0 equiv | 100 | 3 | |
| 4 c | CsF (5.0) | 2.0 equiv | rt | 24 | Complex mixture d |
| 5 e | CsF (5.0) | 2.0 equiv | rt | 24 | NR f |
a Reactions were carried out with 1 (1.0 equiv), 14 (1.5 or 2.0 equiv), and reagent (3.0 or 5.0 equiv) in DMF (0.1 M solution of 1). b Isolated yield. c Reaction was carried out in the presence of Et2Zn (2.0 equiv). d Triflate 1 was recovered in 36% yield. e Reaction was carried out in the presence of Me3Al (2.0 equiv). f No reaction; Triflate 1 was recovered in 79% yield.
Scheme 7Conversion of 16 into 15a.
Scheme 8Two reaction pathways.
Scheme 9Conversion of 7a,b into 15a,b.
Scheme 10Direct one-pot synthesis of benzofuran 15b.
Scheme 11Preparation of 8a and transformation of 8a into 15a.
Synthesis of benzofuran 15a a.
| Entry | Base (1.0 equiv) | Solvent | Time (h) | Yield (%) b | |
|---|---|---|---|---|---|
| 1 | NaH | DMF | rt | 16 | 83 |
| 2 | LiHMDS | THF | −40 | 88 | NR c |
| 3 | NaHMDS | THF | −40 | 88 | 11 |
| 4 | KHMDS | THF | −40 | 16 | 96 |
a Reactions were carried out with 8a (1.0 equiv) and base (1.0 equiv). b Isolated yield. c No reaction; Starting substrate 8a was recovered in 84% yield.