Heshmat Mojgan, Leven Matthias, Linker Olga, Sebastian Marina, Gürtler Christoph, Machat Martin R
CAT Catalytic Center, ITMC, RWTH Aachen University, Worringerweg 2, 52074 Aachen, Germany.
Covestro Deutschland AG, Kaiser-Wilhelm-Allee 60, 51373 Leverkusen, Germany.
Phys Chem Chem Phys. 2023 Aug 2;25(30):20485-20494. doi: 10.1039/d3cp03146b.
The ring opening polymerization of cyclic carbonates made from epoxide and CO to CO-containing polymers constitutes an emerging technology of particular industrial interest. Considering the reaction of ring-opening polymerization of cyclic ethylene carbonate to produce polyethercarbonate polyols, several types of catalysts were tested experimentally and mechanistic pathways were proposed, but a detailed analysis of structure property relationship including the CO-liberation pathways is still lacking. This contribution is using computational methods to investigate reported benchmark catalysts with the lead structure AMO (A: alkali metal or alkyl, M: main group element or transition metal) that are particularly approved as effiecient catalysts for industrial purpose. Employing DFT-metadynamics simulations, free energy surfaces (FESs) for the key-steps in the catalytic polymerization of cyclic ethylene carbonate (cEC) are generated. Important structural criteria and characteristics of the catalysts that influence the catalytic performance and (side)reaction pathways are determined. It turns out that less nucleophilicity of the catalyst anion and more labile cations remain major criteria for prohibiting CO liberation during polymerization. The key learnings of this contribution currently serve as a basis to develop the next generation of catalysts to bring this emerging carbon capture and use (CCU) technology into industrial application.
由环氧化物和一氧化碳制备含一氧化碳聚合物的环状碳酸酯的开环聚合构成了一项具有特殊工业意义的新兴技术。考虑到环状碳酸亚乙酯开环聚合反应以生产聚醚碳酸酯多元醇,实验测试了几种类型的催化剂并提出了反应机理途径,但仍缺乏对包括一氧化碳释放途径在内的结构-性能关系的详细分析。本论文利用计算方法研究了具有先导结构AMO(A:碱金属或烷基,M:主族元素或过渡金属)的已报道基准催化剂,这些催化剂特别被认可为工业上有效的催化剂。采用密度泛函理论-元动力学模拟,生成了环状碳酸亚乙酯(cEC)催化聚合关键步骤的自由能面(FESs)。确定了影响催化性能和(副)反应途径的催化剂的重要结构标准和特征。结果表明,催化剂阴离子的亲核性较低和阳离子更不稳定仍然是阻止聚合过程中一氧化碳释放的主要标准。本论文的关键研究成果目前作为开发下一代催化剂的基础,以将这项新兴的碳捕获与利用(CCU)技术应用于工业生产。