Song Jung-Ah, Peterson Gregory I, Bang Ki-Taek, Ahmed Tonia S, Sung Jong-Chan, Grubbs Robert H, Choi Tae-Lim
Department of Chemistry, Seoul National University, Seoul 08826, Korea.
The Arnold and Mabel Beckman Laboratory of Chemical Synthesis, Division of Chemistry and Chemical Engineering, California Institute of Technology, Pasadena, California 91125, United States.
J Am Chem Soc. 2020 Jun 10;142(23):10438-10445. doi: 10.1021/jacs.0c02785. Epub 2020 May 11.
An unsaturated polymer's /-olefin content has a significant influence on its properties. For polymers obtained by ring-opening metathesis polymerization (ROMP), the /-olefin content can be tuned by using specific catalysts. However, -selective ROMP has suffered from narrow monomer scope and lack of control over the polymerization (giving polymers with broad molecular weight distributions and prohibiting the synthesis of block copolymers). Herein, we report the versatile -selective controlled living ROMP of various -tricyclo[4.2.2.0]deca-3,9-diene and various norbornene derivatives using a fast-initiating dithiolate-chelated Ru catalyst. Polymers with -olefin content as high as 99% could be obtained with high molecular weight (up to of 105.1 kDa) and narrow dispersity (<1.4). The living nature of the polymerization was also exploited to prepare block copolymers with high -olefin content for the first time. Furthermore, owing to the successful control over the stereochemistry and narrow dispersity, we could compare - and -rich polynorbornene and found the former to have enhanced resistance to shear degradation.
不饱和聚合物的烯丙基含量对其性能有显著影响。对于通过开环易位聚合(ROMP)获得的聚合物,烯丙基含量可通过使用特定催化剂进行调节。然而,选择性ROMP存在单体范围窄以及聚合过程缺乏控制的问题(导致聚合物分子量分布宽,且无法合成嵌段共聚物)。在此,我们报道了使用一种快速引发的二硫醇盐螯合钌催化剂,对各种三环[4.2.2.0]癸-3,9-二烯和各种降冰片烯衍生物进行通用的选择性可控活性ROMP。可以获得烯丙基含量高达99%、高分子量(高达105.1 kDa)且分散度窄(<1.4)的聚合物。还首次利用聚合的活性性质制备了具有高烯丙基含量的嵌段共聚物。此外,由于成功控制了立体化学和窄分散度,我们能够比较富含烯丙基和富含乙烯基的聚降冰片烯,并发现前者具有增强的抗剪切降解性能。