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Benzophenonevs. Copper/Benzophenone in Light-Promoted Atom Transfer Radical Additions (ATRAs): Highly Effective Iodoperfluoroalkylation of Alkenes/Alkynes and Mechanistic Studies

Authors :
Redouane Beniazza
Jean-Marc Vincent
Christelle Absalon
Rachel L. Atkinson
Sergey A. Denisov
Nathan D. McClenaghan
Frédéric Castet
Dominique Lastécouères
Institut des Sciences Moléculaires (ISM)
Centre National de la Recherche Scientifique (CNRS)-École Nationale Supérieure de Chimie et de Physique de Bordeaux (ENSCPB)-Université Sciences et Technologies - Bordeaux 1-Université Montesquieu - Bordeaux 4-Institut de Chimie du CNRS (INC)
Source :
Advanced Synthesis and Catalysis, Advanced Synthesis and Catalysis, Wiley-VCH Verlag, 2016, 358 (18), pp.2949-2961. ⟨10.1002/adsc.201600501⟩
Publication Year :
2016
Publisher :
Wiley, 2016.

Abstract

Iodoperfluooralkylation of terminal alkenes and alkynes is effectively photo-promoted by benzophenone 2 (BP) or the photoreducible copper(II) complex 1. In particular, BP at 1 mol% in methanol upon 365 nm irradiation with a low-pressure mercury lamp (type TLC=thin layer chromatography, 6 W) results in a fast reaction with excellent reaction yields. Complex 1 and BP 2 exhibited very similar reactivity, suggesting that the reactions involving 1 are likely to be governed by the benzophenone photoactivation processes, rather than copper(I)/(II) redox processes. Mechanistic investigations using transient absorption spectroscopy revealed that a deactivation pathway of the benzophenone triplet (3BP*) is via its reaction with the methanol solvent. We propose that the generated radicals, in particular .CH2OH, play a key role in the initiation step forming Rf. by reacting with RfI, Rf. then entering a radical chain cycle. 1H NMR studies provided evidence that a substantial amount (∼7% NMR yield) of the hemiacetal CH3OCH2OH is formed, i.e., the possible by-product of the reaction between .CH2OH and RfI. Finally, DFT calculations indicate that a triplet-triplet energy transfer (TTET) process from 3BP* to perfluorooctyl iodide (C8F17I) is unlikely or should be rather slow under the reaction conditions, consistent with the transient absorption studies.

Details

ISSN :
16154150 and 16154169
Volume :
358
Database :
OpenAIRE
Journal :
Advanced Synthesis & Catalysis
Accession number :
edsair.doi.dedup.....539f3364348652ae3ab86b35ad2e9c84