| Literature DB >> 30147804 |
Felix Strieth-Kalthoff1,2, Ashley R Longstreet1,3, Jessica M Weber1, Timothy F Jamison1.
Abstract
Herein, we introduce a new class of bench-stable N-heterocyclic carbene (NHC) nickel-precatalysts for homogeneous nickel-catalysis. The nickel(II) complexes are readily activated to Ni0 in situ under mild conditions, via a proposed Heck-type mechanism. The precatalysts are shown to facilitate carbonyl-ene, hydroalkenylation, and amination reactions.Entities:
Keywords: N-heterocyclic carbene ligands; homogeneous catalysis; hydroalkenylation; nickel; precatalyst
Year: 2018 PMID: 30147804 PMCID: PMC6099443 DOI: 10.1002/cctc.201800454
Source DB: PubMed Journal: ChemCatChem ISSN: 1867-3880 Impact factor: 5.686
Scheme 1a) Nickel precatalysts bearing an N‐heterocyclic carbene ligand.12, 13, 15, 18 b) Phosphine Ni‐precatalysts previously developed by our group.21.
Synthesis of novel nickel‐NHC complexes.
| Entry | Ni‐Precatalyst | Isolated | |
|---|---|---|---|
| Yield [%] | |||
| 1 |
| X=H ( | 53 |
| 2 | X=F ( | 56 | |
| 3 | X=CF3 ( | 61 | |
| 4 |
| 85 | |
| 5 |
| 17 | |
| 6 |
| R=Me, Et, Ph | 0 |
| 7 | NR2= | 29[a] | |
| 8 | NR2= | 41[a] | |
| 9 | NR2= | 12 | |
| 10 |
|
| 38 |
| 11 |
| 39 | |
| 12 |
| 43 | |
| 13 |
| 57 |
[a] Impure complex isolated. See the Supporting Information.
Evaluation of nickel‐NHC complexes as precatalysts in Ni‐catalyzed carbonyl‐ene reactions.
| Entry | Ni‐Precatalyst | Yield of |
|---|---|---|
| 1 |
| NR |
| 2 |
| <1 |
| 3 |
| <1 |
| 4 |
| <1 |
| 5 |
| NR |
| 6 |
| NR |
| 7 |
| NR |
| 8 |
| NR |
| 9 |
| <5, 30[b] |
| 10 |
| NR |
| 11 |
| <5 |
|
|
|
|
| 13 |
| <5 |
[a] Yields determined by GC against a calibrated internal standard (dodecane, 10 mol %). [b] Reaction time=7 days.
Scheme 2Hypothesized mechanism of activation for precatalyst 5.
Figure 1Product profile for the nickel catalyzed carbonyl‐ene reaction with [Ni(cod)2]/IPr or 5 a. Yields determined by GC against a calibrated internal standard (dodecane, 10 mol %). [a] The addition of cod (0.6 equiv) was used.
Reductive, three‐component coupling of aldehydes, α‐olefins and silyl triflates.
| Entry | Product | R1 | R2 | Yield of | |
|---|---|---|---|---|---|
| [Ni(cod)2]/IPr |
| ||||
| 1 |
|
| phenyl | 73[b] | 93[b] |
| 2 |
| phenyl |
| 62 | 56 |
| 3 |
| benzyl |
| 79 | 75 |
| 4 |
|
| 2‐furfuryl | 10 | 69 |
| 5 |
|
|
| 41 | 78 |
| 6 |
|
|
| 4 | 5 |
[a] Determined by 1H NMR against an internal standard (nitromethane). [b] Determined by GC against a calibrated internal standard (dodecane, 10 mol %).
Tail‐to‐tail hydrovinylation of olefins with [Ni(cod)2]/IPr or precatalyst 5 a.
| Entry | Product | R1 | R2 | Yield of | |
|---|---|---|---|---|---|
| [Ni(cod)2]/IPr |
| ||||
| 1 |
| phenyl |
| 81 | 79 |
| 2 |
| 2‐naphthyl |
| 53 | 65 |
| 3 |
|
|
| 24 | 65 |
[a] Isolated yields. [b] The additions of p‐anisaldehyde, 1‐octene, and Et3SiOTf were doubled.
Scheme 3Aryl amination with precatalyst 5 a.