Yadav Neha, Seidi Farzad, Crespy Daniel, D'Elia Valerio
Department of Materials Science and Engineering,School of Molecular Science and Engineering, Vidyasirimedhi institute of Science and Technology, 21210,Payupnai,Wangchan, Rayong, Thailand.
ChemSusChem. 2019 Feb 21;12(4):724-754. doi: 10.1002/cssc.201802770. Epub 2019 Feb 15.
Given the large amount of anthropogenic CO emissions, it is advantageous to use CO as feedstock for the fabrication of everyday products, such as fuels and materials. An attractive way to use CO in the synthesis of polymers is by the formation of five-membered cyclic organic carbonate monomers (5CCs). The sustainability of this synthetic approach is increased by using scaffolds prepared from renewable resources. Indeed, recent years have seen the rise of various types of carbonate syntheses and applications. 5CC monomers are often polymerized with diamines to yield polyhydroxyurethanes (PHU). Foams are developed from this type of polymers; moreover, the additional hydroxyl groups in PHU, absent in classical polyurethanes, lead to coatings with excellent adhesive properties. Furthermore, carbonate groups in polymers offer the possibility of post-functionalization, such as curing reactions under mild conditions. Finally, the polarity of carbonate groups is remarkably high, so polymers with carbonates side-chains can be used as polymer electrolytes in batteries or as conductive membranes. The target of this Review is to highlight the multiple opportunities offered by polymers prepared from and/or containing 5CCs. Firstly, the preparation of several classes of 5CCs is discussed with special focus on the sustainability of the synthetic routes. Thereafter, specific classes of polymers are discussed for which the use and/or presence of carbonate moieties is crucial to impart the targeted properties (foams, adhesives, polymers for energy applications, and other functional materials).
鉴于大量的人为一氧化碳排放,将一氧化碳用作制造日常产品(如燃料和材料)的原料是有益的。在聚合物合成中使用一氧化碳的一种有吸引力的方法是形成五元环状有机碳酸酯单体(5CCs)。通过使用由可再生资源制备的支架,这种合成方法的可持续性得到了提高。事实上,近年来各种类型的碳酸酯合成和应用不断兴起。5CC单体通常与二胺聚合以生成聚羟基聚氨酯(PHU)。由这类聚合物开发出了泡沫材料;此外,PHU中存在而传统聚氨酯中不存在的额外羟基会导致涂料具有优异的粘合性能。此外,聚合物中的碳酸酯基团提供了后功能化的可能性,例如在温和条件下的固化反应。最后,碳酸酯基团的极性非常高,因此带有碳酸酯侧链的聚合物可用作电池中的聚合物电解质或导电膜。本综述的目标是突出由5CCs制备和/或含有5CCs的聚合物所提供的多种机会。首先,讨论了几类5CCs的制备,特别关注合成路线的可持续性。此后,讨论了特定类别的聚合物,对于这些聚合物而言碳酸酯部分的使用和/或存在对于赋予目标性能(泡沫材料、粘合剂、能源应用聚合物和其他功能材料)至关重要。