| Literature DB >> 23616795 |
William F Bailey1, Justin D Fair.
Abstract
The preparation of fairly strained carbocyclic ring systems by intramolecular 5-exo-trig ring closure has been well documented, and the absence of proton transfers that would compromise such cyclizations is a hallmark of this chemistry. In an effort to explore the limitations of this approach to more highly strained systems, the preparation of a stellane (tricyclo[3.3.0.0(3,7)]octane) framework by an intramolecular carbolithiation cascade involving three coupled 5-exo-trig cyclizations of the vinyllithium derived from 2-bromo-4-vinyl-1,6-heptadiene by lithium-bromine exchange was investigated. The cascade does not afford the stellane; rather, the cascade is terminated after two cyclizations by a proton transfer that occurs by an intermolecular process catalyzed by trace amounts of endo-5-methyl-2-methylenebicyclo[2.2.1]heptane present in reaction mixtures as a consequence of inadvertent quenching of an intermediate alkyllithium during prolonged reaction times at room temperature.Entities:
Keywords: carbolithiation cascade; carbometallation; intermolecular proton transfer; intramolecular carbolithiation; lithium–halogen exchange; strained hydrocarbons
Year: 2013 PMID: 23616795 PMCID: PMC3628773 DOI: 10.3762/bjoc.9.59
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Scheme 1Retrosynthetic plan.
Scheme 2Preparation of 2.
Scheme 3Generation of 3 by lithium–bromine exchange.
Scheme 4Cascade products.
Intramolecular cascade results (Scheme 4).
| products, % yielda (% | ||||||
| entry | time, h | temp, °C | quench | |||
| 1 | 1 | −78 to +24 | D2O | 22.8 | 65.2 (62) | 12.0 (75) |
| 2 | 3 | −78 to +24 | H2O | 4.8 | 63.4 | 31.8 |
| 3 | 3 | −78 to +24 | D2O | 5.8 | 64.0 (90) | 30.2 (99) |
| 4 | 20.5 | −78 to −40 | MeOD | 7.6 | 79.2 (94) | 13.2 (84) |
| 5 | 20.5 | −78 to +24 | D2O | 3.2 | 55.0 (94) | 41.8 (92) |
| 6 | 8; 3 | −78 to −40, +40 | D2O | 1.5 | 60.0 (98) | 38.5 (94) |
aYields were determined by capillary GC. bPercent (d1) deuterium incorporation determined by GC–MS.
Figure 1Reaction progress of the attempted triple-cyclization cascade.
Scheme 5Proton transfer that foils final cyclization.
Scheme 6Preparation of iodide 7 and an authentic sample of 5.
Scheme 7Evidence for the intermolecular nature of the formal [1,4]-proton transfer.