| Literature DB >> 34318557 |
Daniels Posevins1, Aitor Bermejo-López1, Jan-E Bäckvall1,2.
Abstract
Herein we disclose an iron-catalyzed cross-coupling reaction of propargyl ethers with Grignard reagents. The reaction was demonstrated to be stereospecific and allows for a facile preparation of optically active allenes via efficient chirality transfer. Various tri- and tetrasubstituted fluoroalkyl allenes can be obtained in good to excellent yields. In addition, an iron-catalyzed cross-coupling of Grignard reagents with α-alkynyl oxetanes and tetrahydrofurans is disclosed herein, which constitutes a straightforward approach towards fully substituted β- or γ-allenols, respectively.Entities:
Keywords: Grignard reagents; cross-coupling; fluoroalkyl allenes; iron catalysis
Year: 2021 PMID: 34318557 PMCID: PMC8518087 DOI: 10.1002/anie.202106742
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 16.823
Scheme 1Syntheses of allenes and allenols via Fe‐catalyzed cross‐coupling of Grignard reagents with propargylic substrates.
Optimization of the reaction conditions.[a]
|
Entry |
Substrate ( |
Catalyst |
Yield of |
Yield of |
|---|---|---|---|---|
|
1 |
|
Fe(acac)3 [c] |
20 |
60 |
|
2 |
|
Fe(acac)3 |
15 |
58 |
|
3 |
|
Fe(acac)3 |
19 |
69 |
|
4 |
|
Fe(acac)3 |
25 |
67 |
|
5 |
|
Fe(acac)3 |
18 |
47 |
|
6 |
|
Fe(acac)3 |
94 (89) |
n.d. |
|
7 |
|
FeCl3 |
92 |
n.d. |
|
8 |
|
Fe(OAc)2 |
–[d] |
n.d. |
|
9[e] |
|
Fe(acac)3 |
92 |
n.d. |
|
10[f] |
|
Fe(acac)3 |
91 |
n.d. |
|
11 |
|
CuBr |
–[g] |
n.d. |
[a] Reaction conditions: 0.2 M solution of propargylic substrate 1 (0.3 mmol) in PhMe, catalyst (5 mol %) with dropwise addition of Grignard reagent. [b] Determined by NMR using anisole as the internal standard. Isolated yield in parentheses. [c]≥99.9 %. [d] 1 af was recovered in 93 % yield. [e] Using 20 mol % of TMEDA as an additive. [f] Using 20 mol % of IMes⋅HCl as an additive. [g] 1 af was recovered in 96 % yield. acac=acetylacetonate. TMEDA=N,N,N,N‐tetramethylethylenediamine.
Preparation of fluoroalkyl allenes 2.[a]
|
Entry |
Substrate ( |
R4MgX |
Product ( |
Yield of |
|---|---|---|---|---|
|
1 |
|
MeMgBr |
|
89 |
|
2 |
|
|
|
43[c] |
|
3 |
|
PhMgBr |
|
62[d] |
|
4 |
|
MeMgBr |
|
74 |
|
5 |
|
MeMgBr |
|
92 |
|
6 |
|
MeMgBr |
|
72 |
|
7 |
|
MeMgBr |
|
|
|
8 |
|
MeMgBr |
|
88 |
|
9 |
|
MeMgBr |
|
|
|
10 |
|
MeMgBr |
|
56 |
|
11 |
|
PhMgBr |
|
17
|
[a] Reaction conditions: 0.2 M solution of propargyl methyl ether 1 (0.3 mmol) in PhMe, Fe(acac)3 (5 mol %) with dropwise addition of Grignard reagent (1.5 equiv). [b] Isolated yield. [c] Using 10 mol % of TMEDA as an additive. [d] 2.0 equiv of PhMgBr was used and the reaction time was 4 h. [e] The reaction time was 12 h and 1 k was recovered in 43 % yield.
Preparation of γ‐allenols 5.[a]
|
Entry |
Substrate ( |
R3MgX |
Product ( |
Yield of |
|---|---|---|---|---|
|
1 |
|
MeMgBr |
|
88 |
|
2 |
|
BnMgCl |
|
|
|
3 |
|
MeMgBr |
|
|
|
4 |
|
BnMgCl |
|
71 |
|
5 |
|
MeMgBr |
|
68 |
|
6 |
|
PhMgBr |
|
65[d] |
|
7 |
|
MeMgBr |
|
67 |
|
8 |
|
MeMgBr |
|
55 |
[a] Reaction conditions: 0.2 M solution of tetrahydrofuran 4 (0.3 mmol) in PhMe, Fe(acac)3 (5 mol %) with dropwise addition of Grignard reagent (1.5 equiv). [b] Isolated yield. [c] 2.5 equiv of MeMgBr was used. [d] 2.0 equiv of PhMgBr was used and the reaction time was 1 h.
Scheme 2Preparation of β‐allenols 7. Reaction conditions: 0.2 M solution of oxetane 6 (0.3 mmol) in PhMe, Fe(acac)3 (5 mol %) with dropwise addition of Grignard reagent (1.5 equiv).[a] Using 10 mol % of TMEDA as an additive.
Scheme 3Additional experiments.
Scheme 4Preparation of non‐fluorinated allenes 2. Reaction conditions: 0.2 M solution of methyl ether 1 (0.3 mmol) in PhMe, Fe(acac)3 (5 mol %) with dropwise addition of Grignard reagent (1.5 equiv).
Scheme 5Proposed reaction mechanism.