| Literature DB >> 22287537 |
Graham R Dick1, Eric M Woerly, Martin D Burke.
Abstract
Problem solved: an air-stable 2-pyridyl borane that can effectively couple to a wide range of aryl and heteroaryl halides and pseudohalides has evaded the synthesis community for decades. The discovery that Cu(DEA)(2) powerfully enables palladium-mediated cross-couplings with air-stable boronates 1 has finally provided a general solution to this problem. DEA=diethanolamine, DMF=N,N'-dimethylformamide, Tf=trifluoromethanesulfonyl.Entities:
Mesh:
Substances:
Year: 2012 PMID: 22287537 PMCID: PMC3433254 DOI: 10.1002/anie.201108608
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336
Figure 1The 2-pyridyl motif is found in many important small molecules.
Scheme 1a) 2-pyridyl MIDA boronate 1 a is the first air-stable 2-pyridyl borane that can be isolated in chemically pure form. b) An inexpensive, environmentally friendly, and scalable method for preparing 2-pyridyl MIDA boronates. c) A preliminary method for cross-coupling 1 a with activated aryl chlorides. This method is ineffective with more challenging deactivated aryl halides. dba=dibenzylideneacetone, DMF=N,N′-dimethylfomamide, DMSO=dimethyl sulfoxide, IPA=isopropyl alcohol.
Cross-coupling of 2-pyridyl MIDA boronate 1 a with deactivated aryl chloride 3 b[a]
| Entry | ROH | Equiv | Yield [%][b] |
|---|---|---|---|
| 1 | IPA | 3 | 49 |
| 2 | MeOH | 3 | 36 |
| 3 | EtOH | 3 | 39 |
| 4 | 3 | 43 | |
| 5 | 1.5 | 51 | |
| 6 | 1.5 | 35 | |
| 7 | 1.5 | 31 | |
| 8 | 1.5 | 70 | |
| DEA |
[a] Reaction conditions: 1.0 equiv 3 b (1.0 mmol), 1.5 equiv 1 a, 5 mol % XphosPdcycle, 50 mol % Cu(OAc)2, 5 equiv K3PO4, 0.125 m in DMF. [b] Determined by GC analysis. XPhosPdcycle=chloro(2-dicyclohexylphosphino-2′,4′,6′-triisopropyl-1,1′-biphenyl)[2-(2-aminoethyl)phenyl]-palladium(II) methyl tert-butyl ether adduct.
Scheme 2Two possible pathways for the DEA-promoted coupling of 1 a.
Scheme 3
Scheme 4
Scheme 5
Scheme 6General cross-coupling of air-stable 2-pyridyl MIDA boronate 1 a with aryl and heteroaryl chlorides 3[a]
| Entry | 3 | 4 | Yield [%][b] | ||
|---|---|---|---|---|---|
| 1 | 76 | ||||
| 2 | 96 | ||||
| 3 | 75 | ||||
| 4 | 79 | ||||
| 5 | 72 | ||||
| 6[c] | 49 | ||||
| 7 | 86 | ||||
| 8 | 82 | ||||
| 9[c] | 83 | ||||
| 10 | 77 | ||||
| 11 | 80 | ||||
| 12 | 62 | ||||
| 13 | 64 | ||||
| 14 | 82 |
[a] General reaction conditions: 1.0 equiv aryl halide (1 mmol), 1.5 equiv MIDA boronate 1 a, 5 mol % XphosPdcycle, 50 mol % Cu(OAc)2, 1.0 equiv DEA, 5.0 equiv K3PO4, 0.125 m DMF, 100 °C, 24 h. [b] Yield of isolated product. [c] 80 °C.
General cross-coupling of air-stable 2-pyridyl MIDA boronate derivatives 1 with deactivated aryl chlorides 3[a]
| Entry | 1 | 3 | 4 | Yield [%][b] | |||
|---|---|---|---|---|---|---|---|
| 1 | 72 | ||||||
| 2 | 81 | ||||||
| 3 | 81 | ||||||
| 4 | 77 | ||||||
| 5 | 87 | ||||||
| 6 | 78 | ||||||
| 7 | 85 |
[a] General reaction conditions: 1 equiv aryl halide (1 mmol), 1.5 equiv MIDA boronate, 5 mol % XphosPdcycle, 50 mol % Cu(OAc)2, 5 equiv K3PO4, 0.125 m DMF, 100 °C, 24 h. [b] Yield of isolated product.
General coupling of air-stable 2-pyridyl MIDA boronate 1 a with aryl and heteroaryl bromides, iodides, and triflates 8[a]
| Entry | 8 | 4 | Yield [%][b] | ||
|---|---|---|---|---|---|
| 1 | 83 | ||||
| 2 | 79 | ||||
| 3 | 84 | ||||
| 4 | 47 | ||||
| 5 | 55 | ||||
| 6 | 75 | ||||
| 7 | 75 | ||||
| 8 | 81 | ||||
| 9[c] | 67 | ||||
| 10 | 81 | ||||
| 11 | 87 | ||||
| 12[c] | 52 | ||||
| 13 | 90 | ||||
| 14 | 80 |
[a] General reaction conditions: 1.0 equiv aryl halide (1 mmol), 1.5 equiv MIDA boronate 1 a, 5 mol % XphosPdcycle, 50 mol % Cu(OAc)2, 1.0 equiv DEA, 5.0 equiv K3PO4, 0.125 m DMF, 100 °C, 24 h. [b] Yield of isolated product. [c] 80 °C. Boc=tert-butoxycarbonyl, Tf=trifluoromethanesulfonyl.