Noh Jinkyung, Peterson Gregory I, Choi Tae-Lim
Department of Chemistry, Seoul National University, Seoul, 08826, Republic of Korea.
Department of Chemistry, Incheon National University, 119 Academy-ro, Yeonsu-gu, Incheon, 22012, Republic of Korea.
Angew Chem Int Ed Engl. 2021 Aug 16;60(34):18651-18659. doi: 10.1002/anie.202104447. Epub 2021 Jul 16.
We explored the mechanochemical degradation of bottlebrush and dendronized polymers in solution (with ultrasonication, US) and solid states (with ball-mill grinding, BMG). Over 50 polymers were prepared with varying backbone length and arm architecture, composition, and size. With US, we found that bottlebrush and dendronized polymers exhibited consistent backbone scission behavior, which was related to their elongated conformations in solution. Considerably different behavior was observed with BMG, as arm architecture and composition had a significant impact on backbone scission rates. Arm scission was also observed for bottlebrush polymers in both solution and solid states, but only in the solid state for dendronized polymers. Motivated by these results, multi-mechanophore polymers with bottlebrush and dendronized polymer architectures were prepared and their reactivity was compared. Although dendronized polymers showed slower arm-scission, the selectivity for mechanophore activation was much higher. Overall, these results have important implications to the development of new mechanoresponsive materials.
我们研究了刷状聚合物和树枝状聚合物在溶液中(通过超声处理,US)以及固态下(通过球磨,BMG)的机械化学降解。制备了50多种具有不同主链长度、臂结构、组成和尺寸的聚合物。通过超声处理,我们发现刷状聚合物和树枝状聚合物表现出一致的主链断裂行为,这与它们在溶液中的伸长构象有关。使用球磨时观察到了明显不同的行为,因为臂结构和组成对主链断裂速率有显著影响。在溶液和固态中,刷状聚合物均观察到臂断裂,但树枝状聚合物仅在固态中观察到臂断裂。受这些结果的启发,制备了具有刷状和树枝状聚合物结构的多机械响应基团聚合物,并比较了它们的反应活性。尽管树枝状聚合物的臂断裂较慢,但机械响应基团活化的选择性要高得多。总体而言,这些结果对新型机械响应材料的开发具有重要意义。