| Literature DB >> 29861968 |
Adrian Tlahuext-Aca1,2, Matthew N Hopkinson1, Basudev Sahoo1,2, Frank Glorius1.
Abstract
The arylation of alkyl and aromatic terminal alkynes by a dual gold/photoredox catalytic system is described. Using aryldiazonium salts as readily available aryl sources, a range of diversely-functionalized arylalkynes could be synthesized under mild, base-free reaction conditions using visible light from simple household sources or even sunlight. This process, which exhibits a broad scope and functional group tolerance, expands the range of transformations amenable to dual gold/photoredox catalysis to those involving C-H bond functionalization and demonstrates the potential of this concept to access AuI/AuIII redox chemistry under mild, redox-neutral conditions.Entities:
Year: 2015 PMID: 29861968 PMCID: PMC5950757 DOI: 10.1039/c5sc02583d
Source DB: PubMed Journal: Chem Sci ISSN: 2041-6520 Impact factor: 9.825
Scheme 1Gold-catalyzed C–C and C–X bond-forming coupling reactions proposed to proceed via AuI/AuIII redox cycles.
Scheme 2Dual Au/photoredox-catalyzed arylation of different alkynes. General conditions: alkyne (1a–m, 0.30 mmol), 2b (1.2 mmol), [Ru(bpy)3](PF6)2 (0.5 mol%), ((p-MeO)C6H4)3PAuCl (10 mol%) and degassed DMF (3.0 mL). Isolated yields.
Scheme 3Dual Au/photoredox-catalyzed arylation of 1f and 1c with substituted benzenediazonium salts. General conditions: alkyne (0.30 mmol), 2a, 2c–l (1.2 mmol), [Ru(bpy)3](PF6)2 (0.5 mol%), ((p-MeO)C6H4)3PAuCl (10 mol%) and degassed DMF (3.0 mL). [a] Under air using 2.5 mol% of [Ru(bpy)3](PF6)2 in 1 h. [b] [Ru(bpy)3](PF6)2 (2.5 mol%), 16 h of reaction. [c] [Ru(bpy)3](PF6)2 (2.5 mol%), 5 h under 5 W blue LEDs irradiation. Isolated yields.
Reaction optimization
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| Entry | Au( | Photocatalyst | Yield |
| 1 | Ph3PAuCl | [Ru(bpy)3](PF6)2 | 46 |
| 2 | Ph3PAuCl | [Ru(bpy)3](PF6)2 | 78 |
| 3 | (( | [Ru(bpy)3](PF6)2 | 83 |
| 4 | Cy3PAuCl | [Ru(bpy)3](PF6)2 | 72 |
| 5 | XPhosAuCl | [Ru(bpy)3](PF6)2 | — |
| 6 | (PhO)3PAuCl | [Ru(bpy)3](PF6)2 | — |
| 7 | IPrAuCl | [Ru(bpy)3](PF6)2 | — |
| 8 | (( | [Ru(bpy)3](PF6)2 | 83 (80) |
| 9 | (( | [Ru(bpy)3](PF6)2 | 80 |
| 10 | (( | [Ru(bpy)3](PF6)2 | 71 |
| 11 | (( | [Ru(bpy)3](PF6)2 | 60 |
| 12 | (( | [Ru(bpy)3](PF6)2 | 82 |
| 13 | (( | [Ir(ppy)2(dtbbpy)]PF6 | Trace |
| 14 | (( | Eosin Y | — |
| 15 | (( | Fluorescein | — |
General conditions: 1a (0.10 mmol), 2a (0.40 mmol), photocatalyst (2.5 mol%), gold complex (10 mol%) and degassed DMF (1.0 mL).
NMR yields using CH2Br2 as internal standard. Isolated yield in parentheses.
Degassed methanol (1.0 mL).
[Ru(bpy)3](PF6)2 (0.5 mol%), 1 h.
[Ru(bpy)3](PF6)2 (0.5 mol%), 5 W blue LEDs, 1 h.
[Ru(bpy)3](PF6)2 (0.5 mol%), sunlight, 8 h.
[Ru(bpy)3](PF6)2 (0.5 mol%), air, 1 h.
[Ru(bpy)3](PF6)2 (2.5 mol%), air, 1 h.
With Ph2IBF4 (0.40 mmol), [Ir(ppy)2(dtbbpy)]PF6 (5 mol%). See the ESI for further details. ppy = 2-phenylpyridine, dtbbpy = 4,4′-di-tert-butyl-2,2′-bipyridine, XPhos = 2-dicyclohexylphosphino-2′,4′,6′-triisopropylbiphenyl, IPr = 1,3-bis(2,6-diisopropylphenyl)-imidazol-2-ylidene.
Scheme 4Further manipulation of cross-coupled products (see the ESI† for experimental details).
Scheme 5Mechanistic proposal.