Department of Chemistry, University of Fribourg, Chemin du Musée 9, 1700, Fribourg, Switzerland.
Angew Chem Int Ed Engl. 2019 Oct 21;58(43):15278-15282. doi: 10.1002/anie.201907921. Epub 2019 Sep 11.
A recently developed catalytic living ring opening metathesis polymerisation (ROMP) was investigated using a series of reversible chain transfer agents (CTA) carrying either cyclopentene or cyclohexene rings, differing only in ring strain. All cyclopentene derivatives examined showed significantly faster reaction rates than the corresponding cyclohexene derivatives. This resulted in lower molecular weight dispersities and better control of the molecular weight for the cyclopentene compared to the cyclohexene CTAs. Both Grubbs' second and third generation catalysts could be employed in catalytic living ROMP using cyclopentene CTA derivatives. The kinetics of different CTAs were studied, block copolymers were synthesised and residual ruthenium quantified by ICP-OES. All polymers were fully characterised by NMR, GPC and MALDI-ToF mass spectrometry. The new cyclopentene CTAs are readily synthesised in a few straightforward steps and provide faster reaction kinetics than all previously reported reversible CTAs.
最近开发的催化活性开环易位聚合(ROMP)使用一系列带有环戊烯或环己烯环的可逆链转移剂(CTA)进行了研究,这些 CTA 仅在环应变上有所不同。所有研究的环戊烯衍生物的反应速率都明显快于相应的环己烯衍生物。这导致环戊烯 CTA 比环己烯 CTA 具有更低的分子量分散度和更好的分子量控制。Grubbs 的第二代和第三代催化剂都可以用于使用环戊烯 CTA 衍生物的催化活性 ROMP。研究了不同 CTA 的动力学,合成了嵌段共聚物,并通过 ICP-OES 定量了残余钌。所有聚合物均通过 NMR、GPC 和 MALDI-ToF 质谱法进行了全面表征。新的环戊烯 CTA 可以通过几个简单的步骤轻松合成,并提供比所有以前报道的可逆 CTA 更快的反应动力学。