| Literature DB >> 35542514 |
Shuangjie Li1,2,3, Bao Wang2,3,4, Guangyu Dong2,3,4, Chunpu Li2,3, Hong Liu2,3.
Abstract
A direct cobalt-catalyzed oxidative coupling between C(sp2)-H in unactivated benzamides and C(sp3)-H in simple alkanes, ethers and toluene derivatives was explored. This protocol achieves direct C-C formation without using alkyl or aryl halide surrogates and exhibits high practicality with ample substrate scope. The method provides a new way to construct linear and five- or six-membered ring moieties in bioactive molecules. This journal is © The Royal Society of Chemistry.Entities:
Year: 2018 PMID: 35542514 PMCID: PMC9079668 DOI: 10.1039/c8ra01377b
Source DB: PubMed Journal: RSC Adv ISSN: 2046-2069 Impact factor: 4.036
Scheme 1C(sp3)–C(sp2) cross coupling.
Scheme 2Effect of the directing groups.
Optimization of reactiona
|
| ||||
|---|---|---|---|---|
| Entry | Catalyst | Oxidant | Temp. (°C) | Yields |
| 1 | Co(acac)2 | DTBP | 130 | 55 |
| 2 | Co(OAc)2 | DTBP | 130 | 30 |
| 3 | CoBr2 | DTBP | 130 | N. D. |
| 4 | CoC2O4 | DTBP | 130 | 34 |
| 5 | Co(acac)2 | THBP | 130 | N. D. |
| 6 | Co(acac)2 | DCP | 130 | Trace |
| 7 | Co(acac)2 | BPO | 130 | N. D. |
| 8 | Co(acac)2 | K2S2O8 | 130 | N. D. |
| 9 | Co(acac)2 | DDQ | 130 | N. D. |
|
|
|
|
|
|
| 11 | Co(acac)2 | DTBP | 150 | 70 |
| 12 | Co(acac)2 | DTBP | 140 | 57 |
| 13 | Co(acac)2 | DTBP | 140 | 62 |
| 14 | Co(acac)2 | DTBP | 140 | 25 |
Reaction conditions: 1a (0.2 mmol), 2a (1 mL), Co(acac)2 (0.02 mmol), DTBP (0.8 mmol) in PhCF3 (1 mL) under N2 at 140 °C for 24 h.
Isolated yields.
The reaction was carried under air.
The catalyst (0.01 mmol) was used.
10 Equiv. of 2a was used.
Scheme 3Scope of C(sp3)–H and C(sp2)–H partnersa.
Scheme 4Scope of C(sp3)–H in toluene derivativesa.
Scheme 5Mechanistic study.
Scheme 6Plausible mechanism.