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Living radical polymerization dendritic polymers

As a unique method of controlled/living radical polymerization, ATRP has had a tremendous impact on the synthesis of macromolecules with well-defined compositions, architectures, and functionalities, including star- and comb-like polymers as well as branched, hyperbranched, dendritic, network, cyclic type structures and so forth. [Pg.463]

Percec, V, Grigoras, C., and Kim, H.J. (2004) Toward self-assembling dendritic macromolecules from conventional monomers by a combination of living radical polymerization and irreversible terminator multifunctional initiator. Journal of Polymer Science Part A-Polymer Chemistry, 42,505-513. [Pg.165]

He also prepared a poly(styrene-g-styrene) polymer by this technique [114], The lack of crosslinking in these systems is indeed proof of the control achieved with this technique. An eight-arm star polystyrene has also been prepared starting from a calixarene derivative under ATRP conditions [115]. On the other hand, Sawamoto and his coworkers used multifunctional chloroacetate initiator sites and mediation with Ru2+ complexes for the living free-radical polymerization of star poly(methylmethacrylate) [116,117]. More recent work by Hedrick et al. [84] has demonstrated major progress in the use of dendritic initiators [98] in combination with ATRP and other methodologies to produce a variety of structure controlled, starlike poly(methylmethacrylate). [Pg.86]


See other pages where Living radical polymerization dendritic polymers is mentioned: [Pg.549]    [Pg.175]    [Pg.455]    [Pg.11]    [Pg.549]    [Pg.173]    [Pg.184]    [Pg.107]    [Pg.110]    [Pg.125]    [Pg.306]   
See also in sourсe #XX -- [ Pg.548 ]




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Dendritic polymers

Living polymer polymerizations

Living polymerization

Living radical

Living radical polymerization

Polymer live

Polymer radicals

Polymers living

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