Synthesis of Cross-linked Ionic Poly(styrenes) and their Application as Catalysts for the Synthesis of Carbonates from CO<sub>2</sub>and Epoxides
作者:Felix D. Bobbink、Antoine P. Van Muyden、Aswin Gopakumar、Zhaofu Fei、Paul J. Dyson
DOI:10.1002/cplu.201600461
日期:2017.1
rings are bridged by a functionalized spacer, are prepared. The salts are polymerized to afford cross-linked imidazolium-based ionic polystyrene materials, which, owing to the presence of the functionalized spaces, should be highly active organocatalysts for the cycloaddition of CO2 to epoxides to afford cyclic carbonates (CCE reaction). The catalytic activities of the polymers are evaluated in the CCE
制备了一系列基于苯乙烯官能化的咪唑鎓盐,其中两个咪唑鎓环被官能化的间隔基桥接。盐被聚合以提供交联的基于咪唑鎓的离子聚苯乙烯材料,由于存在官能化空间,该材料应为高活性有机催化剂,用于将CO2环加成环氧化物以提供环状碳酸酯(CCE反应)。在CCE反应中评估聚合物的催化活性。最具活性的催化剂具有二醇官能团,并且在80℃和4 bar的压力下具有5 mol%的负载活性,这与最具活性的有机催化剂相当。此外,将温度升至120°C,可在大气压下获得高收率。在更恶劣的条件下 催化剂在低一个数量级的负载下具有高活性,这突出了基准条件对于CCE反应的重要性。此外,聚合物催化剂是有利的,因为它们可以在低催化剂负载下使用,碳酸盐产物容易以纯净形式分离,并且在再使用期间未观察到回收的聚合物催化剂的活性损失。