| Literature DB >> 26224377 |
David J Burns1, Daniel Best1, Martin D Wieczysty2, Hon Wai Lam3.
Abstract
1,3-Enynes containingEntities:
Keywords: CH activation; allylation; enynes; homogeneous catalysis; rhodium
Year: 2015 PMID: 26224377 PMCID: PMC4557058 DOI: 10.1002/anie.201503978
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336
Scheme 1Catalytic oxidative annulations of alkynes and 1,3-enynes.
Figure 1Biologically active spirocyclic barbiturates.
Scheme 2[a] Conducted with 0.50 mmol of 1 a–1 j. [b] Yield of isolated products. [b] Conducted with 0.5 mol % of [{Cp*RhCl2}2]. [c] Conducted in undried DMF. Side products were also obtained; see Ref. [14]. [d] Conducted at 120 °C. [e] Conducted with 5 mol % of [{Cp*RhCl2}2].
[3+3] Oxidative annulations of various 1,3-enynes[a]
| Entry | 1,3-Enyne | Product | Yield [%][b] | |
|---|---|---|---|---|
| 1 2 | 60 64 | |||
| 3 | 80 | |||
| 4 5 6 | 95 78 72 | |||
| 7 | 86 | |||
| 8 | 57 | |||
[a] Conducted with 0.50 mmol of 1. [b] Yield of isolated products.
Scheme 3Possible catalytic cycle.
Scheme 4Formation of spiroindene 4 c from 1,3-enyne 2 k.
Scheme 5Oxidative annulation with a hexadeuterated 1,3-enyne.