Abstract
The photoinduced electron transfer (PET) substitution reaction of electron-rich aromatic nuclei with perfluoroalkyl Rf groups was carried out in water or aqueous mixtures to render substitution products resulting from replacement of aromatic H atoms with the Rf moiety in good yields (57-88 %). Some mechanistic aspects are discussed, supporting the notion of a PET reaction leading to a classical radical homolytic aromatic substitution (HAS) followed by an electron transfer (ET) and then a proton transfer (PT) sequence. A radical mechanism superimposed on a redox process is proposed to account for product formation. Evidence for the radical cation species (as an initiation event) generated from electron-rich arenes in the presence of perfluoroalkyl halides is provided by the UV/Vis transient spectra obtained by Nanosecond Laser Flash Photolysis techniques. Copyright © 2013 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.
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Barata-Vallejo, S., Flesia, M. M., Lantaño, B., Argüello, J. E., Peñéñory, A. B., & Postigo, A. (2013). Heterogeneous photoinduced homolytic aromatic substitution of electron-rich arenes with perfluoroalkyl groups in water and aqueous media - A radical-ion reaction. European Journal of Organic Chemistry, (5), 998–1008. https://doi.org/10.1002/ejoc.201201271
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