Bertrand Arthur, Lortie Frédéric, Bernard Julien
Université de Lyon, Lyon 69003, France; INSA de Lyon, IMP@INSA, Villeurbanne 69621, France; CNRS, UMR 5223, Ingénierie des Matériaux Polymères, Villeurbanne 69621, France.
Macromol Rapid Commun. 2012 Dec 21;33(24):2062-91. doi: 10.1002/marc.201200508. Epub 2012 Nov 7.
The contribution of supramolecular chemistry to polymer science opens new perspectives for the design of polymer materials exhibiting valuable properties and easier processability due to the dynamic nature of non-covalent interactions. Hydrogen bonding polymers can be used as supramolecular units for yielding larger assemblies that possess attractive features, arising from the combination of polymer properties and the responsiveness of hydrogen bonds. The post-polymerization modification of reactive end-groups is the most common procedure for generating such polymers. Examples of polymerizations mediated by hydrogen bonding-functionalized precursors have also recently been reported. This contribution reviews the current synthetic routes toward hydrogen bonding sticker chain-end functionalized polymers.
超分子化学对聚合物科学的贡献为聚合物材料的设计开辟了新的前景,由于非共价相互作用的动态性质,这些聚合物材料具有宝贵的性能且加工性更佳。氢键聚合物可作为超分子单元,用于生成具有吸引人特性的更大聚集体,这些特性源于聚合物性能与氢键响应性的结合。反应性端基的后聚合改性是制备此类聚合物最常用的方法。最近也报道了由氢键官能化前体介导的聚合反应实例。本文综述了目前制备氢键贴标链端官能化聚合物的合成路线。