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(Controlled) Free radical (co)polymerization of multivinyl monomers: strategies, topological structures and biomedical applications

  • Zhili Li
  • , Haiyang Yong
  • , Kaixuan Wang
  • , Ya Nan Zhou
  • , Jing Lyu
  • , Lirong Liang
  • , Dezhong Zhou
  • Xi'an Jiaotong University
  • University College Dublin
  • Capital Medical University

Research output: Contribution to journalArticlepeer-review

15 Scopus citations

Abstract

Free radical (co)polymerization (FRP/FRcP) of multivinyl monomers (MVMs) has emerged as a powerful strategy for the synthesis of chemically and topologically complex polymers due to its unique reaction kinetics, which enables the preparation of polymers with multiple functional groups and novel macromolecular structures. However, conventional FRP/FRcP of MVMs inevitably leads to insoluble crosslinked materials. Therefore, the development of advanced strategies for the controlled polymerization of MVMs is essential for the preparation of chemically and topologically complex polymers. In this review, we introduce the gelation mechanism of conventional FRP of MVMs and present the strategies of controlled polymerization of MVMs for the preparation of chemically and topologically complex polymers. We also discuss polymers with unique topologies synthesized by controlled polymerization of MVMs, such as crosslinked networks, (hyper)branched, star, cyclic, and single-chain cyclized/knotted structures. Finally, biomedical applications of various advanced polymeric materials prepared by controlled polymerization of MVMs are highlighted and the challenges is this field are discussed.

Original languageEnglish
Pages (from-to)4142-4157
Number of pages16
JournalChemical Communications
Volume59
Issue number28
DOIs
StatePublished - 9 Mar 2023

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