| Literature DB >> 29062414 |
Marco Leonardi1, Mercedes Villacampa1, J Carlos Menéndez1.
Abstract
The pseudo-five-component reaction between β-dicarbonyl compounds (2 molecules), diamines and α-iodoketones (2 molecules), prepared in situ from aryl ketones, was performed efficiently under mechanochemical conditions involving high-speed vibration milling with a single zirconium oxide ball. This reaction afforded symmetrical frameworks containing two pyrrole or fused pyrrole units joined by a spacer, which are of interest in the exploration of chemical space for drug discovery purposes. The method was also extended to the synthesis of one compound containing three identical pyrrole fragments via a pseudo-seven-component reaction. Access to compounds having a double bond in their spacer chain was achieved by a different approach involving the homodimerization of 1-allyl- or 1-homoallylpyrroles by application of cross-metathesis chemistry.Entities:
Keywords: diversity-oriented synthesis; mechanochemistry; multicomponent reactions; pyrroles; solvent-free synthesis
Year: 2017 PMID: 29062414 PMCID: PMC5629381 DOI: 10.3762/bjoc.13.190
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Scheme 1Our synthetic planning and structural diversity of starting materials employed in our work.
Scheme 2Pseudo five-component reactions affording symmetrical bispyrrole derivatives joined by a spacer.
Figure 1Scope of the synthesis of symmetrical bispyrrole derivatives.
Scheme 3A pseudo-seven-component reaction that affords a terpyrrole derivative with a functionalized spacer.
Scheme 4Homodimerization of 2-allyl- and 2-homoallylpyrroles via cross-metathesis reactions.
Yields of the cross-metathesis reactions.
| Cmpd | R1 | R2 | R4 | |||
| CH3 | OMe | 2-furyl | 1 | 87 | 88 | |
| CH3 | Me | C(CH3)3 | 1 | 60 | 70a | |
| CH3 | OMe | 2-thienyl | 2 | 71 | 80b | |
| CH2-CO2Et | OEt | 2-furyl | 1 | 80 | 88 | |
aThe reaction time was 48 h in this case. bAs a 1:1 E/Z mixture.