Methyl Radical Initiated Kharasch and Related Reactions
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BORIS DOI
Date of Publication
October 25, 2021
Publication Type
Article
Division/Institute
Series
Advanced synthesis & catalysis
ISSN or ISBN (if monograph)
1615-4150
Publisher
Wiley-VCH
Language
English
Publisher DOI
Description
An improved procedure to run halogen atom and related chalcogen group transfer radical additions is reported. The procedure relies on the thermal decomposition of di-tert-butylhyponitrite (DTBHN), a safer alternative to the explosive diacetyl peroxide, to produce highly reactive methyl radicals that can initiate the chain process. This mode of initiation generates byproducts that are either gaseous (N2) or volatile (acetone and methyl halide) thereby facilitating greatly product purification by either flash column chromatography or distillation. In addition, remarkably simple and mild reaction conditions (refluxing EtOAc during 30 minutes under normal atmosphere) and a low excess of the radical precursor reagent (2 equivalents) make this protocol particularly attractive for preparative synthetic applications. This initiation procedure has been demonstrated with a broad scope since it works efficiently to add a range of electrophilic radicals generated from iodides, bromides, selenides and xanthates over a range of unactivated terminal alkenes. A diverse set of radical trap substrates exemplifies a broad functional group tolerance. Finally, di-tert-butyl peroxyoxalate (DTBPO) is also demonstrated as alternative source of tert-butoxyl radicals to initiate these reactions under identical conditions which gives gaseous by-products (CO2).
File(s)
File | File Type | Format | Size | License | Publisher/Copright statement | Content | |
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Adv_Synth_Catal_-_2020_-_Tappin_-_Methyl_Radical_Initiated_Kharasch_and_Related_Reactions.pdf | text | Adobe PDF | 3.84 MB | publisher | published | ||
adsc_2021_version_accepted.pdf | text | Adobe PDF | 2.77 MB | publisher | accepted |