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Visible-light-induced synthesis of polymers with versatile end groups mediated by organocobalt complexes
Liu, Xu ; Tian, Lei ; Wu, Zhenqiang ; Zhao, Xianyuan ; Wang, Zikuan ; Yu, Donggeng ; Fu, Xuefeng
刊名POLYMER CHEMISTRY
2017
关键词LIVING RADICAL POLYMERIZATION FRAGMENTATION CHAIN TRANSFER RAFT POLYMERIZATION AMBIENT-TEMPERATURE COBALT PORPHYRINS ELECTRON-TRANSFER CLICK CHEMISTRY VINYL-ACETATE COPOLYMERS FUNCTIONALIZATION
DOI10.1039/c7py01086a
英文摘要Synthesis of polymers with well-defined functional groups at a and. ends remains a major challenge in polymer chemistry. We report a versatile method to prepare polymers with various functional groups at a ends without tedious post-modification by using carefully designed organocobalt complexes ((salen) Co-R) as the catalyst. The. ends of (salen) Co were further functionalized to the hydroxyl group. Both of the more active monomers (MAM; acrylates and acrylamides) and less active monomers (LAM; vinyl acetate) could be controlled to produce homo and various block copolymers with a predetermined molecular weight, narrow polydispersity and high level of polymer end fidelity under visible light irradiation. More importantly, the polymers are prepared and functional groups are installed simultaneously during the propagation process, including alkynyl, tert-butyl, phenyl, cyclohexyl, fluoride, chloride, furyl, or thienyl groups at the a ends.; National Natural Science Foundation of China [21322108, 21571009]; SCI(E); ARTICLE; 39; 6033-6038; 8
语种英语
内容类型期刊论文
源URL[http://ir.pku.edu.cn/handle/20.500.11897/470449]  
专题化学与分子工程学院
推荐引用方式
GB/T 7714
Liu, Xu,Tian, Lei,Wu, Zhenqiang,et al. Visible-light-induced synthesis of polymers with versatile end groups mediated by organocobalt complexes[J]. POLYMER CHEMISTRY,2017.
APA Liu, Xu.,Tian, Lei.,Wu, Zhenqiang.,Zhao, Xianyuan.,Wang, Zikuan.,...&Fu, Xuefeng.(2017).Visible-light-induced synthesis of polymers with versatile end groups mediated by organocobalt complexes.POLYMER CHEMISTRY.
MLA Liu, Xu,et al."Visible-light-induced synthesis of polymers with versatile end groups mediated by organocobalt complexes".POLYMER CHEMISTRY (2017).
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