| Literature DB >> 35516592 |
Sakshi Aggarwal1, Dasari Srinivas1, Chinnabattigalla Sreenivasulu1, Gedu Satyanarayana1.
Abstract
Recent research has been focused on the transition metal-catalyzed reactions. Herein we have developed nickel-catalyzed synthesis of 3-aryl benzofurans from ortho-alkenyl phenols via intramolecular dehydrogenative coupling. Notably, simple O2 gas served as an oxidant, without using any sacrificial hydrogen acceptor. The strategy enabled the synthesis of 3-aryl benzofurans in good to excellent yields. This journal is © The Royal Society of Chemistry.Entities:
Year: 2020 PMID: 35516592 PMCID: PMC9054549 DOI: 10.1039/d0ra03071f
Source DB: PubMed Journal: RSC Adv ISSN: 2046-2069 Impact factor: 4.036
Fig. 1Representative examples of benzofurans of biological relevance.
Scheme 1Representative approaches for the synthesis of 3-aryl benzofurans.[12,14,20]
Screening conditions for the formation of 3-aryl benzofurans 2c from 1ca,e
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| Entry | Catalyst (mol%) | Ligand (10 mol%) | Additives (mol%) | Oxidant | Solvent (mL) | Time (h) | Temp. (°C) | Yield 2c (%) |
| 1 | Ni(acac)2 (5) | 1,10-Phen | — | — | DMF (1.5) | 48 | 140 | 40 |
| 2 | Ni(acac)2 (5) | PPh3 | — | — | DMF (1.5) | 36 | 140 | 42 |
| 3 | Ni(acac)2 (5) | PPh3 | — | O2 | DMF (1.5) | 36 | 140 | 70 |
| 4 | Ni(acac)2 (5) | PPh3 | TEMPO (10) | Open air | DMF (2) | 48 | 140 | 80 |
| 5 | Ni(acac)2 (5) | PPh3 | TEMPO (10) | O2 | DMF (2) | 36 | 140 | 80 |
| 6 | Ni(acac)2 (5) | PPh3 | DDQ (10) | O2 | DMF (1.5) | 36 | 140 | — |
| 7 | Ni(acac)2 (5) | PPh3 | OXONE (10) | O2 | DMF (1.5) | 36 | 140 | 30 |
| 8 | Ni(acac)2 (5) | PPh3 | K2S2O8 (10) | O2 | DMF (1.5) | 48 | 140 | 34 |
| 9 | Ni(acac)2 (5) | PPh3 | TBHP in H2O (10) | O2 | DMF (1.5) | 48 | 140 | 48 |
| 10 | Ni(acac)2 (5) | PPh3 | TEMPO (10) | O2 | H2O (1) | 48 | 140 | — |
| 11 | Ni(acac)2 (5) | PPh3 | TEMPO (10) | O2 |
| 36 | 140 | — |
| 12 | Ni(acac)2 (5) | PPh3 | TEMPO (10) | O2 | DMSO (1.5) | 36 | 140 | 70 |
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| 14 | Ni(acac)2 (2) | PPh3 | TEMPO (10) | O2 | DMA (1) | 36 | 140 | 70 |
| 15 | Ni(acac)2 (5) | 1,10-Phen | TEMPO (10) | Open air | DMA (1) | 36 | 140 | 64 |
| 16 | Ni(acac)2 (5) | 1,10-Phen | TEMPO (10) | O2 | DMA (1) | 40 | 140 | 60 |
| 17 | Ni(acac)2 (5) | — | — | O2 | DMA (1) | 40 | 140 | 45 |
| 18 | Ni(acac)2 (5) | — | TEMPO (5) | Open air | CH3CN (2) | 72 | 140 | 60 |
| 19 | Ni(acac)2 (5) | — | DDQ (5) | Open air | CH3CN (2) | 72 | 140 | 50 |
| 20 | Ni(acac)2 (5) | PPh3 | K2CO3 (2 equiv.) | Open air | DMA (1) | 72 | 140 | — |
| 21 | Ni(acac)2 (5) | PPh3 | K2CO3 (2 equiv.) | O2 | DMA (1) | 72 | 140 | — |
| 22 | NiCl2 (5) | PPh3 | TEMPO (10) | O2 | DMA (1) | 48 | 140 | 50 |
| 23 | Ni(acac)2 (5) | PPh3 | TEMPO (10) | O2 | DMA (1) | 36 | 120 | 30 |
| 24 | Ni(acac)2 (5) | PPh3 | TEMPO (10) | O2 | DMA (1) | 36 | 80 | — |
| 18 | Ni(acac)2 (5) | — | TEMPO (5) | Open air | CH3CN (2) | 72 | 140 | 60 |
| 19 | Ni(acac)2 (5) | — | DDQ (5) | Open air | CH3CN (2) | 72 | 140 | 50 |
All reactions were carried out using ortho-alkenyl phenol 1c (83 mg, 0.4 mmol), Ni(acac)2 [0.008 mmol (2 mol%) to 0.02 mmol (5 mol%)], ligand (0.04 mmol, 10 mol%).
Reaction was conducted under nitrogen atmosphere.
Very less conversion was observed.
The by-product 3c was formed (up-to 5–20% yields).
Some other volatile by-products also formed along with 2c, which were not isolable.
Scope for the formation of 3-aryl benzofurans 2a–wa,b
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Reactions were carried out using ortho-alkenyl phenols 1a–w (79.0–110.0 mg, 0.4 mmol), Ni(acac)2 (5.2 mg, 0.02 mmol, 5 mol%), PPh3 (10.5 mg, 0.04 mmol, 10 mol%), TEMPO (6.5 mg, 0.04 mmol) at 140 °C under oxygen atmosphere.
Yields in the parenthesis are isolated yields of products.
Scheme 2Plausible mechanism for the formation of 3-aryl benzofurans 2 from 1.