Radical Ring-Opening Polymerization: Scope, Limitations, and Application to (Bio)Degradable Materials
Author(s) -
Antoine Tardy,
Julien Nicolas,
Didier Gigmès,
Catherine Lefay,
Yohann Guillaneuf
Publication year - 2017
Publication title -
chemical reviews
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 20.528
H-Index - 700
eISSN - 1520-6890
pISSN - 0009-2665
DOI - 10.1021/acs.chemrev.6b00319
Subject(s) - polymerization , chemistry , monomer , radical polymerization , cobalt mediated radical polymerization , polymer chemistry , copolymer , chain transfer , reversible addition−fragmentation chain transfer polymerization , polymer , ring opening polymerization , living free radical polymerization , heteroatom , chain growth polymerization , ring (chemistry) , organic chemistry
Cyclic monomers bearing either vinyl or exomethylene groups have the ability to be polymerized through a radical pathway via a ring-opening mechanism (addition-fragmentation process), leading to the introduction of functionalities in the polymer backbone. Radical ring-opening polymerization (rROP) combines the advantages of both ring-opening polymerization and radical polymerization, that is the preparation of polymers bearing heteroatoms in the backbone but with the ease and robustness of a radical process. This current review presents a comprehensive description of rROP by detailing: (i) the various monomers that polymerize through rROP; (ii) the main parameters that govern the rROP mechanism; (iii) the copolymerization by conventional or controlled/living radical polymerization between rROP monomers and traditional vinyl monomers to obtain copolymers with advanced properties; (iv) the different applications (low shrinkage materials and preparation of (bio)degradable materials) of rROP monomer-containing materials, and (v) the main alternatives to rROP to induce degradability to materials obtained by a radical polymerization.
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