链式转移
化学
单体
聚合
乙烯基醚
共聚物
高分子化学
聚合物
木筏
乙醚
链端接
自由基聚合
可逆加成-断裂链转移聚合
侧链
动链长度
有机化学
作者
J. Baker,Richard Zhang,C. Adrian Figg
摘要
Incorporating exactly one monomer at a defined position during a chain polymerization is exceptionally challenging due to the statistical nature of monomer addition. Herein, photoinduced electron/energy transfer (PET) enables the incorporation of exactly one vinyl ether into polyacrylates synthesized via reversible addition–fragmentation chain transfer (RAFT) polymerization. Near-quantitative addition (>96%) of a single vinyl ether is achieved while retaining >99% of the thiocarbonylthio chain ends. Kinetic studies reveal that performing the reactions at 2 °C limits unwanted chain breaking events. Finally, the syntheses of diblock copolymers are reported where molecular weights and dispersities are well-controlled on either side of the vinyl ether. Overall, this report introduces an approach to access acrylic copolymers containing exactly one chemical handle at a defined position, enabling novel macromolecular architectures to probe structure–function properties, introduce sites for de/reconstruction, store information, etc.
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