Li Chengming, Buurma Niklaas J, Haq Ihtshamul, Turner Colin, Armes Steven P, Castelletto Valeria, Hamley Ian W, Lewis Andrew L
Department of Chemistry, Dainton Building, University of Sheffield, Brook Hill, Sheffield, South Yorkshire, S3 7HF, UK.
Langmuir. 2005 Nov 22;21(24):11026-33. doi: 10.1021/la0515672.
The synthesis of doubly thermoresponsive PPO-PMPC-PNIPAM triblock copolymer gelators by atom transfer radical polymerization using a PPO-based macroinitiator is described. Provided that the PPO block is sufficiently long, dynamic light scattering and differential scanning calorimetry studies confirm the presence of two separate thermal transitions corresponding to micellization and gelation, as expected. However, these ABC-type triblock copolymers proved to be rather inefficient gelators: free-standing gels at 37 degrees C required a triblock copolymer concentration of around 20 wt%. This gelator performance should be compared with copolymer concentrations of 6-7 wt% required for the PNIPAM-PMPC-PNIPAM triblock copolymers reported previously. Clearly, the separation of micellar self-assembly from gel network formation does not lead to enhanced gelator efficiencies, at least for this particular system. Nevertheless, there are some features of interest in the present study. In particular, close inspection of the viscosity vs temperature plot obtained for a PPO43-PMPC160-PNIPAM81 triblock copolymer revealed a local minimum in viscosity. This is consistent with intramicelle collapse of the outer PNIPAM blocks prior to the development of the intermicelle hydrophobic interactions that are a prerequisite for macroscopic gelation.
描述了使用基于PPO的大分子引发剂通过原子转移自由基聚合合成双热敏性PPO-PMPC-PNIPAM三嵌段共聚物凝胶剂的方法。只要PPO嵌段足够长,动态光散射和差示扫描量热法研究就证实了如预期的那样存在对应于胶束化和凝胶化的两个单独的热转变。然而,这些ABC型三嵌段共聚物被证明是效率相当低的凝胶剂:在37℃下形成自立凝胶需要约20 wt%的三嵌段共聚物浓度。这种凝胶剂性能应与先前报道的PNIPAM-PMPC-PNIPAM三嵌段共聚物所需的6-7 wt%的共聚物浓度进行比较。显然,至少对于这个特定体系,胶束自组装与凝胶网络形成的分离并不会导致凝胶剂效率的提高。尽管如此,本研究中仍有一些有趣的特征。特别是,对PPO43-PMPC160-PNIPAM81三嵌段共聚物获得的粘度与温度关系图的仔细检查显示粘度存在局部最小值。这与在宏观凝胶化的先决条件——胶束间疏水相互作用发展之前,外部PNIPAM嵌段在胶束内的塌陷是一致的。