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Pulsed-Addition Ring-Opening Metathesis Polymerization: Catalyst-Economical Syntheses of Homopolymers and Block Copolymers

机译:脉冲加成开环复分解聚合:均聚物和嵌段共聚物的催化剂-经济合成

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摘要

Poly(tert-butyl ester norbornene imide) homopolymers and poly(tert-butyl ester norbornene imide-b-N-methyloxanorbornene imide) copolymers were prepared by pulsed-addition ring-opening metathesis polymerization (PA-ROMP). PA-ROMP is a unique polymerization method that employs a symmetrical cis-olefin chain transfer agent (CTA) to simultaneously cap a living polymer chain and regenerate the ROMP initiator with high fidelity. Unlike traditional ROMP with chain transfer, the CTA reacts only with the living chain end, resulting in narrowly dispersed products. The regenerated initiator can then initiate polymerization of a subsequent batch of monomer, allowing for multiple polymer chains with controlled molecular weight and low polydispersity to be generated from one metal initiator. Using the fast-initiating ruthenium metathesis catalyst (H_2IMes)(Cl)_2(pyr)_2RuCHPh and cis-4-octene as a CTA, the capabilities of PA-ROMP were investigated with a Symyx robotic system, which allowed for increased control and precision of injection volumes. The results from a detailed study of the time required to carry out the end-capping/initiator-regeneration step were used to design several experiments in which PA-ROMP was performed from one to ten cycles. After determination of the rate of catalyst death, a single, low polydispersity polymer was prepared by adjusting the amount of monomer injected in each cycle, maintaining a constant monomer/catalyst ratio. Additionally, PA-ROMP was used to prepare nearly perfect block copolymers by quickly injecting a second monomer at a specific time interval after the first monomer injection, such that chain transfer had not yet occurred. Polymers were characterized by gel permeation chromatography with multiangle laser light scattering.
机译:通过脉冲加成开环复分解聚合(PA-ROMP)制备了聚(叔丁基酯降冰片烯酰亚胺)均聚物和聚(叔丁基酯降冰片烯酰亚胺-b-N-甲基氧杂降冰片烯酰亚胺)共聚物。 PA-ROMP是一种独特的聚合方法,它采用对称的顺式烯烃链转移剂(CTA)来同时覆盖活性聚合物链并以高保真度再生ROMP引发剂。与具有链转移功能的传统ROMP不同,CTA仅与活动链末端发生反应,从而导致产品分布狭窄。然后,再生的引发剂可以引发随后一批单体的聚合,从而允许从一种金属引发剂产生具有受控分子量和低多分散性的多条聚合物链。使用快速引发的钌复分解催化剂(H_2IMes)(Cl)_2(pyr)_2RuCHPh和顺式4-辛烯作为CTA,使用Symyx机器人系统研究了PA-ROMP的功能,从而提高了控制和精度注射量。进行封端/引发剂再生步骤所需时间的详细研究结果被用于设计几个实验,其中PA-ROMP进行1到10个循环。在确定催化剂的死亡速率之后,通过调节每个循环中注入的单体的量,并保持恒定的单体/催化剂比来制备单一的低多分散性聚合物。另外,PA-ROMP用于通过在第一次注入单体后的特定时间间隔快速注入第二个单体来制备几乎完美的嵌段共聚物,从而尚未发生链转移。通过具有多角度激光散射的凝胶渗透色谱法表征聚合物。

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