| Literature DB >> 27775849 |
Júlia L Monteiro1, Paula F Carneiro1, Petteri Elsner2, Dominique M Roberge2, Peter G M Wuts3,4, Katherine C Kurjan5, Bernhard Gutmann1,6, C Oliver Kappe1,6.
Abstract
We report an operationally simple and rapid continuous flow radical C-C bond formation under Minisci-type reaction conditions. The transformations are performed at or below room temperature employing hydrogen peroxide (H2 O2 ) and dimethylsulfoxide (DMSO) as reagents in the presence of an FeII catalyst. For electron-rich aromatic and heteroaromatic substrates, C-C bond formation proceeds satisfactorily with electrophilic radicals including . CF3 , . C4 F9 , . CH2 CN, and . CH2 CO2 Et. In contrast, electron-poor substrates exhibit minimal reactivity. Importantly, trifluoromethylations and nonafluororobutylations using CF3 I and C4 F9 I as reagents proceed exceedingly fast with high conversion for selected substrates in residence times of a few seconds. The attractive features of the present process are the low cost of the reagents and the extraordinarily high reaction rates. The direct application of the protocol to dihydroergotamine, a complex ergot alkaloid, yielded the corresponding trifluoromethyl ergoline derivative within 12 seconds in a continuous flow microreactor on a 0.6 kg scale. The trifluoromethyl derivative of dihydroergotamine is a promising therapeutic agent for the treatment of migraines.Entities:
Keywords: Fenton reagent; Minisci reaction; flow chemistry; radical reactions; trifluoromethylation
Year: 2016 PMID: 27775849 DOI: 10.1002/chem.201604579
Source DB: PubMed Journal: Chemistry ISSN: 0947-6539 Impact factor: 5.236