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Polymerization cation radical chain cyclobutanation

A cation radical chain cycloaddition-polymerization catalysed by tris(4-bromophenyl)aminium hexachloroantimonate has been reported to afford polymers with an average molecular weight up to 150000. Both cyclobutanation and Diels-Alder polymers were obtained. " The reactivity of the phospine radical cation towards nucleophiles was studied. Tributylphosphine reacted with l,l-dimethyl-4,4-bipyridinium (methyl viologen, MV) in the presence of an alcohol or thiol (RXH X = O, S), which resulted in the gradual formation of the one-electron reduced form... [Pg.182]

Hence, cation-radical copolymerization leads to the formation of a polymer having a lower molecular weight and polydispersity index than the polymer got by cation-radical polymerization— homocyclobutanation. Nevertheless, copolymerization occnrs nnder very mild conditions and is regio-and stereospecihc (Bauld et al. 1998a). This reaction appears to occnr by a step-growth mechanism, rather than the more efficient cation-radical chain mechanism proposed for poly(cyclobutanation). As the authors concluded, the apparent suppression of the chain mechanism is viewed as an inherent problem with the copolymerization format of cation-radical Diels-Alder polymerization. ... [Pg.361]


See other pages where Polymerization cation radical chain cyclobutanation is mentioned: [Pg.886]   
See also in sourсe #XX -- [ Pg.72 ]




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Cation Radical Cyclobutanation

Cation cyclobutanations

Cationic chain polymerization

Cationic polymerization

Cationic polymerization polymerizations

Chain radical

Cyclobutanation

Cyclobutane

Cyclobutane polymerization

Cyclobutanes

Radical chain polymerization

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