| Literature DB >> 35539154 |
Niranjan Panda1, Irshad Mattan1.
Abstract
An efficient protocol for the synthesis of various coumestans from the intramolecular annulation of 3-iodo-4-aryloxy coumarins through C-H activation has been developed. When 3-iodo-4-aryloxy coumarins were treated with 10% Pd/C (0.3 mol% Pd) in the presence of sodium acetate, the corresponding coumestans were produced in good to excellent yield. Reusability of the palladium catalyst was investigated in up to three consecutive cycles and it was found that the yield of the reaction was almost unaltered. Sequential iodination and O-arylation of 4-hydroxy coumarins leading to the 3-iodo-4-aryloxy coumarins were also achieved in a one-pot two-step process starting from aryl iodides in high yield. Pivalic acid was revealed to be the most effective additive for the later method to produce 3-iodo-4-phenoxy coumarins. Different functional groups bearing electron-donating as well as withdrawing groups are also tolerant to the reaction conditions. This journal is © The Royal Society of Chemistry.Entities:
Year: 2018 PMID: 35539154 PMCID: PMC9078490 DOI: 10.1039/c7ra12419h
Source DB: PubMed Journal: RSC Adv ISSN: 2046-2069 Impact factor: 4.036
Fig. 1Examples of biologically potent naturally occurring coumestans.
Scheme 1Transition metal catalyzed routes to coumestans.
Optimization of reaction conditiona
| Entry | Oxidant (equiv.) | PhI (equiv.) | Additive (3 equiv.) | Solvent | % yield |
|---|---|---|---|---|---|
| 1 | Oxone (3) | 3 | — | 1,4-Dioxane | n.d. |
| 2 | NaIO4 (3) | 3 | — | 1,4-Dioxane | n.d. |
| 3 | K2S2O8 (3) | 3 | — | 1,4-Dioxane | n.d. |
| 4 | TBHP (3) | 3 | — | 1,4-Dioxane | n.d. |
| 5 | NaBO3·H2O (3) | 3 | — | 1,4-Dioxane | n.d. |
| 6 | 3 | — | 1,4-Dioxane | 38 | |
| 7 | 3 | — | Toluene | 45 | |
| 8 | 3 | AcOH | 1,4-Dioxane | 50 | |
| 9 | 3 | AcOH | Toluene | 70 | |
| 10 | 3 | TsOH | Toluene | n.r. | |
| 11 | 3 | TFA | Toluene | 60 | |
| 12 | 3 | K2CO3 | Toluene | n.r. | |
| 14 | 3 | PivOH | CH3CN | 16 | |
| 15 | 3 | PivOH | MeOH | 37 | |
| 16 | 3 | PivOH | DCE | 48 | |
| 17 | 3 | PivOH | DMF | n.d. | |
| 18 | 3 | PivOH | DMSO | n.d. | |
| 19 | 1 | PivOH | Toluene | 45 | |
| 20 | 1.5 | PivOH | Toluene | 68 | |
| 22 | 1.5 | AcOH | Toluene | 70 | |
Reaction conditions: a mixture of oxidant and iodobenzene was heated at 50 °C for 5 h in a sealed tube. Then, 2a was added and the reaction mixture was refluxed.
GC yield.
Scheme 2Plausible mechanism.
Scheme 3Synthesis of 4-aryloxy 3-iodo isocoumarins. Reaction conditions: a mixture of 1 and mCPBA (2 equiv.) in toluene was heated at 50 °C for 5 h in a sealed tube. Then, 2 was added and the reaction mixture was heated at 120 °C for 12 h. Isolated yield.
Synthesis of coumestans
|
| |||
|---|---|---|---|
| Entry | Substrate (3) | Coumestan (4) | % yield |
| 1 | 3aa |
| 94 |
| 2 | 3ab |
| 94 |
| 3 | 3ac |
| 85 |
| 4 | 3ad |
| 90 |
| 5 | 3ae |
| 79 |
| 6 | 3af |
| 78 |
| 7 | 3ag |
| 96 |
| 8 | 3ah |
| 89 |
| 9 | 3ai |
| 89 |
| 10 | 3aj |
| 91 |
| 11 | 3ba |
| 93 |
| 12 | 3ca |
| 75 |
| 13 | 3da |
| 81 |
| 14 | 3ea |
| 73 |
Reaction conditions: [method C] a mixture of 3 (0.1 mmol), Pd/C (10 wt%) (3 mg, 0.3 mol%), NaOAc (1.5 equiv.) in 3 mL of DMA at 140 °C for 16 h.