Aix Marseille Univ , CNRS, Institut de Chimie Radicalaire UMR 7273, campus Saint Jérôme, Avenue Escadrille Normandie-Niemen, Case 542, 13397 Marseille Cedex 20, France.
Institut Galien Paris-Sud , UMR CNRS 8612, Univ Paris-Sud, Faculté de Pharmacie, 5 rue Jean-Baptiste Clément, F-92296 Châtenay-Malabry Cedex, France.
Chem Rev. 2017 Feb 8;117(3):1319-1406. doi: 10.1021/acs.chemrev.6b00319. Epub 2017 Jan 13.
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.
具有乙烯基或外亚甲基基团的环状单体能够通过自由基途径通过开环机制(加成-断裂过程)聚合,从而在聚合物主链中引入官能团。自由基开环聚合(rROP)结合了开环聚合和自由基聚合的优点,即制备在主链中含有杂原子的聚合物,但具有自由基过程的简便性和稳健性。本综述通过详细描述:(i)通过 rROP 聚合的各种单体;(ii)控制 rROP 机制的主要参数;(iii)rROP 单体与传统乙烯基单体之间的常规或受控/活性自由基聚合的共聚,以获得具有先进性能的共聚物;(iv)rROP 单体的材料(低收缩材料和可生物降解材料的制备)的不同应用,以及(v)rROP 的主要替代方法,以诱导通过自由基聚合获得的材料的可降解性。