Department of Chemistry, Texas A&M University at Qatar, PO Box 23874, Doha, Qatar.
Laboratoire des IMRCP, Universite Paul Sabatier CNRS UMR 5623, 118 route de Narbonne, Toulouse, 31062 Cedex 9, France.
Macromol Rapid Commun. 2020 Sep;41(17):e2000382. doi: 10.1002/marc.202000382. Epub 2020 Aug 16.
Functionalization of polyolefins, in particular polyisobutylene, remains a relatively unexplored application for the Michael reaction. This work evaluates the potential of polyisobutylene acrylate (PIBA) chain-end modification via organocatalyzed thiol-Michael and aza-Michael additions. A series of chain-end functional polyisobutylene oligomers are prepared using "click" reactions of thiols or amines to PIBA in the presence of 0.02 equivalents of organocatalyst. Reaction kinetics and chain-end transformations are monitored using NMR spectroscopy and the macromolecular products are characterized by size exclusion chromatography. Further potential of this synthetic strategy is illustrated by thiol-Michael addition of thiols formed in situ via nucleophilic thiolactone ring opening. The obtained results provide an efficient method for the preparation of functional polyisobutylene oligomers that can be utilized in a broad range of potential applications.
聚烯烃的功能化,特别是聚异丁烯,对于迈克尔反应来说仍然是一个相对未被探索的应用领域。本工作评估了通过有机催化的硫醇-Michael 和氮杂-Michael 加成来修饰聚异丁烯丙烯酰胺(PIBA)链末端的潜力。通过在 0.02 当量的有机催化剂存在下,将巯基或胺与 PIBA 进行“点击”反应,制备了一系列链末端功能化的聚异丁烯低聚物。使用 NMR 光谱监测反应动力学和链末端转化,通过尺寸排阻色谱法对高分子产物进行表征。通过原位形成的亲核硫内酯开环的硫醇-Michael 加成进一步说明了这种合成策略的潜力。所得到的结果为制备功能化的聚异丁烯低聚物提供了一种有效的方法,这些低聚物可以在广泛的潜在应用中得到利用。