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Kharasch method radical addition reactions

ATRP is analogous to atom transfer radical addition reactions which are well known in the field of organic chemistry as Kharasch addition reactions [83]. These methods often utilize a transition metal complex based on copper, iron, ruthenium, and nickel to abstract a halogen and produce a carbon-based radical [84, 85]. Since the first reports in 1995 of living radical polymerizations based on copper(I) for styrene and methyl methacrylate [86] and ruthenium(II) for methyl methacrylate [87], this technique has become widely utilized in polymer science. [Pg.37]

Following the pioneer work of Kharasch [60], methods involving radical transfer of halides have been developed. The atom transfer method has emerged in the 1980s as one of the best method for conducting intra- and intermolecular radical additions to olefins [61]. This approach is particularly appealing from an atom economy point of view since all atoms remains in the final product. The non-reductive nature of these reactions is also particularly important for the preparation of functionalized molecules. Halides transfers and more particularly iodine atom transfers have found nice applications for cyclizations, annula-tions and cascade reactions [62]. These reactions are based on exothermic radical steps, such as the addition of an alkyl radical to an olefin, followed by an... [Pg.95]

The addition of a halogenated compound to an olefin via a free radical process is an effective method for the formation of carbon-carbon bonds, which is commonly referred to as Kharasch reaction or atom transfer radical addition (ATRA). ° The reaction was first found as a free radical... [Pg.429]

The addition of a single-bonded reagent across a multiple bond is one of the fundamental reactions of organic radicals. The basic principles of this reaction were first advanced by Kharasch in pioneering studies on the mechanism of the peroxide-initiated anti-Maikovnikov addition of hydrogen bromide to alkenes.1 In the atom transfer method, the generation and removal of radicals are coupled and occur in the key atom transfer step. Compared to other methods, the atom transfer method provides unique options for synthetic reactions. But there are also important limitations. Recently, there has been a renewed interest in the application of the characteristics of atom transfer reactions in synthesis and new developments have been reviewed.5,161... [Pg.751]


See other pages where Kharasch method radical addition reactions is mentioned: [Pg.335]   
See also in sourсe #XX -- [ Pg.751 , Pg.752 , Pg.753 , Pg.754 , Pg.755 , Pg.756 , Pg.757 , Pg.770 ]

See also in sourсe #XX -- [ Pg.4 , Pg.751 , Pg.752 , Pg.753 , Pg.754 , Pg.755 , Pg.756 , Pg.757 , Pg.770 ]




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Additional methods

Additive method

Additivity methods

Kharasch method

Kharasch reaction

Radical method

Radical reaction addition

Radical reactions methods

Reaction methods

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