Ma Hongwei, Wang Qiuyun, Sang Wei, Han Li, Liu Pibo, Chen Jun, Li Yang, Wang Yurong
State Key Laboratory of Fine Chemicals, Department of Polymer Science and Engineering, School of Chemical Engineering, Dalian University of Technology, Dalian, 116024, China; Liaoning Key Laboratory of Polymer Science and Engineering, School of Chemical Engineering, Dalian University of Technology, Dalian, 116024, China.
Macromol Rapid Commun. 2015 Apr;36(8):726-32. doi: 10.1002/marc.201400660. Epub 2015 Feb 16.
By combining living anionic polymerization and hydrosilylation, densely grafted bottlebrush polymers with controlled spacing of branch points are prepared. Dimethyl(4-vinylphenyl)silane and dimethyl(4-(1-phenylvinyl)phenyl)silane are anionically (co)polymerized to synthesize uniform, alternating, and gradient in-chain silyl-hydride (Si-H) functionalized backbones. The spacing of branch points is controlled effectively by regulating the distribution of Si-H groups along the backbones. Three backbones with a similar number of Si-H groups but variable distributions are used to synthesize corresponding bottlebrush polymers via hydrosilylation between the backbones and chain-end vinyl functionalized polystyrene. The uniformly grafted bottlebrush exhibits the highest hydrodynamic radius (Rh ) of 5.6 nm and the lowest Tg of 79 °C which may be attributed to its compact grafted structure. This methodology exhibits high efficiency and convenience for the construction of bottlebrushes with controlled distribution of brushes.
通过结合活性阴离子聚合和硅氢化反应,制备了具有可控支化点间距的密集接枝刷状聚合物。将二甲基(4-乙烯基苯基)硅烷和二甲基(4-(1-苯基乙烯基)苯基)硅烷进行阴离子(共)聚合,以合成均匀、交替且链内硅氢化(Si-H)官能化的梯度主链。通过调节Si-H基团沿主链的分布,可有效控制支化点的间距。使用三种具有相似Si-H基团数量但分布不同的主链,通过主链与链端乙烯基官能化聚苯乙烯之间的硅氢化反应合成相应的刷状聚合物。均匀接枝的刷状聚合物表现出最高的流体力学半径(Rh)为5.6 nm,最低的玻璃化转变温度(Tg)为79 °C,这可能归因于其紧密的接枝结构。该方法在构建具有可控刷分布的刷状聚合物方面表现出高效性和便利性。