| Literature DB >> 34122900 |
Arunachalam Sagadevan1, Anastasios Charitou1, Fen Wang1, Maria Ivanova1, Martin Vuagnat1, Michael F Greaney1.
Abstract
A ruthenium-catalyzed ortho C-H arylation process is described using visible light. Using the readily available catalyst [RuCl2(p-cymene)]2, visible light irradiation was found to enable arylation of 2-aryl-pyridines at room temperature for a range of aryl bromides and iodides. This journal is © The Royal Society of Chemistry.Entities:
Year: 2020 PMID: 34122900 PMCID: PMC8159458 DOI: 10.1039/d0sc01289k
Source DB: PubMed Journal: Chem Sci ISSN: 2041-6520 Impact factor: 9.825
Scheme 1Ruthenium photocatalysis for meta-alkylation (A) and proposed ortho-arylation (B).
Development of Ru photoarylationa
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| Entry | Catalyst | Additives | Solvent | Yield |
| 1 | [RuCl2( | MesCO2H | 1,4-Dioxane | (70) |
| 2 | [RuCl2( | MesCO2H | DME | 60 |
| 3 | [RuCl2( | MesCO2H | THF | 65 |
| 4 | [RuCl2( | MesCO2H | 2-MeTHF | (72) |
| 5 | [RuCl2( | N-Ac- | 2-MeTHF | (74) |
| 6 | [RuCl2( | N-Ac- | 2-MeTHF | (78) |
| 7 | [RuCl2( | N-Ac- | 2-MeTHF | (80) |
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| 9 | [RuCl2( | N-Ac- | MeOH, MeCN, DCM, or DMF | Trace |
| 10 | RuCl3·H2O | None | 2-MeTHF | 0 |
| 11 | Ru(PPh3)4Cl2 | N-Ac- | 2-MeTHF | 0 |
| 12 | Ru(bpy)3Cl2 | None | 2-MeTHF | 0 |
| 13 | [RuCl2( | N-Ac- | 2-MeTHF | (72) |
| 14 | No catalyst | N-Ac- | 2-MeTHF | 0 |
| 15 | [RuCl2( | N-Ac- | 2-MeTHF | 0 |
| 16 | [RuCl2( | N-Ac- | 2-MeTHF | 0 |
Reaction conditions: 1a (0.3 mmol), 4a (0.6 mmol), [Ru] catalyst (10 mol%), additive (10 mol%), base 2.0 equiv., solvent (1 mL). The mixture was irradiated with blue LEDs (40–90 W power) for 24 h under N2 atmosphere.
Yields in brackets refer to combined 1H NMR yield using 1,3,5-trimethylbenzene (mesitylene) as the internal standard, unbracketed yields are isolated. THF = tetrahydrofuran, 2-MeTHF = 2-methyl tetrahydrofuran, DME = 1,2-dimethoxyethane, DMF = dimethyl formamide, DCM = dichloromethane.
Scheme 2Photoarylation of 2-arylazines with p-bromoanisole (Anis = 4-BrC6H4). Unless otherwise noted, reaction conditions were as follows: 1 (1.0 eq., 0.3 mmol), 4a (2.0 eq., 0.6 mmol), [Ru] catalyst (10 mol%), additive (10 mol%), base (2.0 eq.), solvent (1 mL), H2O (5 eq.). The mixture was irradiated with blue LEDs (40–90 W power) for 24 h under N2 (1 atm). The yields refer to isolated yields after purification by column chromatography on silica gel (major product illustrated). Reaction performed using 0.250 mmol of 1 (1.0 eq.) and 0.375 mmol of 4a (1.5 eq.). Reaction performed without the addition of N-Ac-l-Ile. Reaction run for 40 h.
Scheme 3Photoarylation of 2-arylpyridines with various aryl halides. Unless otherwise noted, reaction conditions were as follows: 1 (1.0 eq., 0.25–0.30 mmol), 4 (1.5 eq., 0.375–0.45 mmol), [Ru] catalyst (10 mol%), base (2.0 eq.), solvent (1 mL), H2O (5 eq.). The mixture was irradiated with blue LEDs (40–90 W power) for 24 h in N2 (1 atm). The yields refer to isolated yields after purification by column chromatography on silica gel. Reaction run for 72 h. Reaction performed using 0.3 mmol of 1 (1.0 eq.) and 0.6 mmol of 4 (2.0 eq.) in the presence of N-Ac-l-Ile (10 mol%). Reaction run for 40 h.
Scheme 4(A) Intermolecular competition experiment between aryl halides. (B) Reaction in the presence of radical inhibitors. (C) Detection of free p-cymene. Conversion refers to amount of p-cymene produced. (D) Light on/off experiment. (E) Proposed pathway. BHT = butylated hydoxytoluene.