URD Agro-Biotechnologies Industrielles (ABI), CEBB, AgroParisTech, Pomacle, 51110, France.
Macromol Rapid Commun. 2022 Jul;43(13):e2200254. doi: 10.1002/marc.202200254. Epub 2022 Apr 21.
Nowadays, degradation of polymeric material is a hot topic, it is either related to environmental considerations to avoid pollution accumulation, or to biomedical applications to reduce the toxicity or to facilitate the excretion of foreign agents in the body. Functionalization is a promising and interesting method to tune polymers degradation kinetics and profiles in a robust and controllable way depending on the targeted application. The incorporation of a functionality to a macromolecule occurs through mainly two strategies: direct functionalization of the corresponding monomers before their polymerization, and postpolymerization modifications that can occur on the side, main or/and end chains of the polymers. Ideally, the lifespan of a material is restricted to the duration of the application, its mechanical and chemical properties do not deteriorate and does not produce toxic byproducts over the degradation process. This review presents the latest advances in polymer functionalization strategies in terms of their impact on the degradation process. Special considerations are given to the main classes of polymers including polyesters, polyurethanes, polyacetals, as well as vinyl-based and phosphorous-derived polymers.
如今,聚合物材料的降解是一个热门话题,这要么与避免污染积累的环境考虑有关,要么与生物医学应用有关,以降低毒性或促进体内外来物质的排泄。功能化是一种很有前途和有趣的方法,可以根据目标应用以稳健和可控的方式调整聚合物的降解动力学和特性。通过主要两种策略将官能团引入大分子中:在聚合前直接对相应单体进行功能化,以及可以在聚合物的侧链、主链和/或端链上进行的后聚合修饰。理想情况下,材料的寿命限制在应用的持续时间内,其机械和化学性质在降解过程中不会恶化,也不会产生有毒副产物。本文综述了聚合物功能化策略在降解过程中的最新进展。特别考虑了包括聚酯、聚氨酯、聚缩醛以及基于乙烯基和磷衍生聚合物在内的主要聚合物类别。