Florjańczyk Zbigniew, Rokicki Gabriel, Parzuchowski Paweł Grzegorz, Mazurek-Budzyńska Magdalena, Dębowski Maciej
Faculty of Chemistry, Warsaw University of Technology, Noakowskiego 3, 00-664 Warsaw, Poland.
Polymers (Basel). 2022 Feb 13;14(4):718. doi: 10.3390/polym14040718.
Carbon dioxide is an important raw material in many industrial technologies, but it is also one of the greenhouse gases that has to be effectively removed from the environment. This contribution provides a brief overview of carbon dioxide-based polymers developed in the laboratories of the Faculty of Chemistry at Warsaw University of Technology. We present some simple and versatile synthetic approaches that can be used to prepare a library of oligocarbonate diols, polycarbonates, poly(ester-carbonates), poly(ether-carbonates) and various types of polyurethanes, including the newly emerging family of environmentally friendly non-isocyanate polyurethanes. The main synthesis strategy involves the reaction of CO with oxiranes to form five-membered cyclic carbonates, which can be utilized as a source of carbonate bonds in polymeric materials obtained by the ester exchange reactions and/or step-growth polyaddition. We also show that cyclic carbonates are valuable starting materials in the synthesis of hyperbranched polymers and polymer networks. The properties of several CO-based polymers are presented and their potential application as biomaterials, smart materials, and absorbers with a high CO capture capacity is discussed.
二氧化碳是许多工业技术中的重要原材料,但它也是必须从环境中有效去除的温室气体之一。本文简要概述了华沙理工大学化学学院实验室开发的基于二氧化碳的聚合物。我们介绍了一些简单且通用的合成方法,可用于制备一系列低聚碳酸二醇、聚碳酸酯、聚(酯 - 碳酸酯)、聚(醚 - 碳酸酯)以及各种类型的聚氨酯,包括新兴的环保型非异氰酸酯聚氨酯家族。主要合成策略涉及一氧化碳与环氧乙烷反应形成五元环状碳酸酯,其可作为通过酯交换反应和/或逐步增长加聚反应获得的聚合物材料中碳酸酯键的来源。我们还表明,环状碳酸酯是合成超支化聚合物和聚合物网络的有价值的起始原料。介绍了几种基于一氧化碳的聚合物的性能,并讨论了它们作为生物材料、智能材料以及具有高二氧化碳捕获能力的吸收剂的潜在应用。